S. Davidson, Y. Kuno, and A. Saporta,

, Eur. Phys. J, vol.78, issue.2, p.109, 2018.

S. Davidson and A. Saporta, Constraints on 2 2q operators from ? ? e flavour-changing meson decays
URL : https://hal.archives-ouvertes.fr/hal-01861994

, Phys. Rev, vol.99, issue.1, p.15032, 2019.

S. L. Glashow, Partial Symmetries of Weak Interactions

, Nucl. Phys, vol.22, pp.579-588, 1961.

S. Weinberg,

A. Model and . Leptons,

, Phys. Rev. Lett, vol.19, pp.1264-1266, 1967.

A. Salam, Weak and Electromagnetic Interactions

, Conf. Proc, vol.680519, pp.367-377, 1968.

G. Aad,

, the search for the Standard Model Higgs boson with the ATLAS detector at the LHC

, Phys. Lett, vol.716, pp.1-29, 2012.

S. Chatrchyan,

, Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC, Phys. Lett, vol.716, pp.30-61, 2012.

Y. Kuno and Y. Okada,

, Muon decay and physics beyond the standard model

, Rev. Mod. Phys, vol.73, pp.151-202, 2001.

L. Calibbi and G. Signorelli,

, Charged Lepton Flavour Violation: An Experimental and Theoretical Introduction, Riv. Nuovo Cim, vol.41, issue.2, p.1, 2018.

A. M. Baldini, Search for the lepton flavour violating decay ? + ? e + ? with the full dataset of the MEG experiment

, Eur. Phys. J, vol.76, issue.8, p.434, 2016.

H. Wilhelm and . Bertl, Search for the Decay ? + ? e + e + e ?

, Nucl. Phys, vol.260, pp.1-31, 1985.

A. Perrevoort, Status of the Mu3e Experiment at PSI

, EPJ Web Conf, vol.118, p.1028, 2016.

H. Wilhelm and . Bertl, A Search for muon to electron conversion in muonic gold

, Eur. Phys. J, vol.47, pp.337-346, 2006.

Y. Kuno, A search for muon-to-electron conversion at J-PARC: The COMET experiment

, PTEP, pp.22-23, 2013.

R. M. Carey, Proposal to search for ? ? N ? e ? N with a single event sensitivity below 10 ?16, 2008.

R. Appel, Search for lepton flavor violation in K+ decays

, Phys. Rev. Lett, vol.85, pp.2877-2880, 2000.

R. Aaij, Search for the lepton-flavour violating decay D 0 ? e ± ? ?
URL : https://hal.archives-ouvertes.fr/in2p3-01236676

, Phys. Lett, vol.754, pp.167-175, 2016.

J. P. Lees, Searches for Rare or Forbidden Semileptonic Charm Decays
URL : https://hal.archives-ouvertes.fr/in2p3-00614119

, Phys. Rev, vol.84, p.72006, 2011.

B. Aubert, Search for the rare decay B ? ?l + l ?
URL : https://hal.archives-ouvertes.fr/in2p3-00137610

, Phys. Rev. Lett, vol.99, p.51801, 2007.

G. Steigman,

, Primordial Nucleosynthesis in the Precision Cosmology Era

, Ann. Rev. Nucl. Part. Sci, vol.57, pp.463-491, 2007.

H. Richard, B. D. Cyburt, K. A. Fields, E. Olive, and . Skillman, New BBN limits on physics beyond the standard model from 4 He

, Astropart. Phys, vol.23, pp.313-323, 2005.

G. Steigman, Primordial nucleosynthesis: successes and challenges

, Int. J. Mod. Phys, vol.15, pp.1-36, 2006.

G. Hinshaw,

, Nine-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Parameter Results

, Astrophys. J. Suppl, vol.208, p.19, 2013.

P. A. Ade, results. XIII. Cosmological parameters, 2015.
URL : https://hal.archives-ouvertes.fr/in2p3-00803620

, Astron. Astrophys, vol.594, p.13, 2016.

N. Aghanim, results. VI. Cosmological parameters, 2018.
URL : https://hal.archives-ouvertes.fr/in2p3-00803620

M. Yoshimura, Unified Gauge Theories and the Baryon Number of the Universe

, Phys. Rev. Lett, vol.41, p.746, 1978.

A. Riotto and M. Trodden,

, Ann. Rev. Nucl. Part. Sci, vol.49, pp.35-75, 1999.

I. Affleck and M. Dine, A New Mechanism for Baryogenesis

, Nucl. Phys, vol.249, pp.361-380, 1985.

A. Yu, N. V. Ignatiev, V. A. Krasnikov, A. N. Kuzmin, and . Tavkhelidze,

, Universal CP Noninvariant Superweak Interaction and Baryon Asymmetry of the Universe

, Phys. Lett, vol.76, pp.436-438, 1978.

A. D. Sakharov, Violation of CP Invariance, C asymmetry, and baryon asymmetry of the universe

, Pisma Zh. Eksp. Teor. Fiz, vol.5, issue.5, p.61, 1967.

J. H. Oort, The force exerted by the stellar system in the direction perpendicular to the galactic plane and some related problems

, Bull. Astron. Inst. Netherlands bf, vol.6, p.33, 1932.

F. Zwicky, Die Rotverschiebung von extragalaktischen Nebeln

, Helv. Phys. Acta, vol.6, p.207, 1933.

Y. Sofue and V. Rubin, Rotation curves of spiral galaxies

, Ann. Rev. Astron. Astrophys, vol.39, pp.137-174, 2001.

C. Vera, W. Rubin, and J. Ford, Rotation of the Andromeda Nebula from a Spectroscopic Survey of Emission Regions, Astrophys. J, vol.159, pp.379-403, 1970.

K. G. Begeman, A. H. Broeils, and R. H. Sanders, Extended rotation curves of spiral galaxies: Dark haloes and modified dynamics

. Mon, . Not, and . Roy, Astron. Soc, vol.249, p.523, 1991.

Q. R. Ahmad,

, Direct evidence for neutrino flavor transformation from neutral current interactions in the Sudbury Neutrino Observatory

, Phys. Rev. Lett, vol.89, p.11301, 2002.

Y. Fukuda, Evidence for oscillation of atmospheric neutrinos

, Phys. Rev. Lett, vol.81, pp.1562-1567, 1998.

M. Tanabashi, Review of Particle Physics

, Phys. Rev, vol.98, issue.3, p.30001, 2018.

B. Pontecorvo, Mesonium and anti-mesonium

, Zh. Eksp. Teor. Fiz, vol.6, p.429, 1957.

Z. Maki, M. Nakagawa, and S. Sakata, Remarks on the unified model of elementary particles

, Prog. Theor. Phys, vol.28, pp.870-880, 1962.

B. Pontecorvo, Inverse beta processes and nonconservation of lepton charge

, Zh. Eksp. Teor. Fiz, vol.7, p.247, 1957.

B. Pontecorvo, Neutrino Experiments and the Problem of Conservation of Leptonic Charge

, Zh. Eksp. Teor. Fiz, vol.26, p.1717, 1967.

M. Samoil, J. Bilenky, S. T. Hosek, and . Petcov, On Oscillations of Neutrinos with Dirac and Majorana Masses

, Phys. Lett, vol.94, pp.495-498, 1980.

J. Schechter and J. W. Valle, Neutrino Masses in SU(2) x U(1) Theories

, Phys. Rev, vol.22, p.2227, 1980.

M. Doi, T. Kotani, H. Nishiura, K. Okuda, and E. Takasugi, CP Violation in Majorana Neutrinos

, Phys. Lett, vol.102, pp.323-326, 1981.

M. Samoil, S. T. Bilenky, and . Petcov,

, Massive Neutrinos and Neutrino Oscillations

, Rev. Mod. Phys, vol.59, p.575, 1987.

H. V. Klapdor-kleingrothaus, Latest results from the Heidelberg-Moscow double beta decay experiment

, Eur. Phys. J, vol.12, pp.147-154, 2001.

G. B. Franklin, The KATRIN Neutrino Mass Measurement: Experiment, Status, and Outlook

, 13th Conference on the Intersections of Particle and Nuclear Physics, 2018.

R. Aaij, Test of lepton universality using B + ? K + + ? decays
URL : https://hal.archives-ouvertes.fr/in2p3-01015802

, Phys. Rev. Lett, vol.113, p.151601, 2014.

R. Aaij, Test of lepton universality with B 0 ? K * 0 + ? decays
URL : https://hal.archives-ouvertes.fr/hal-01582896

, JHEP, vol.08, p.55, 2017.

Y. Amhis, Averages of b-hadron, c-hadron, and ?-lepton properties as of summer, 2016.
URL : https://hal.archives-ouvertes.fr/in2p3-01518154

, Eur. Phys. J, vol.77, issue.12, p.895, 2017.

R. Aaij, Measurement of the ratio of branching fractions B(B + c ? J/?? + ? ? )/B(B + c ? J/?? + ? ? )
URL : https://hal.archives-ouvertes.fr/in2p3-01348885

, Phys. Rev. Lett, vol.120, issue.12, p.121801, 2018.

J. P. Lees, Evidence for an excess ofB ? D ( * ) ? ?? ? decays

, Phys. Rev. Lett, vol.109, p.101802, 2012.

M. Huschle, Measurement of the branching ratio ofB ? D ( * ) ? ?? ? relative toB ? D ( * ) ?? decays with hadronic tagging at Belle

, Phys. Rev, vol.92, issue.7, p.72014, 2015.

R. Aaij, Measurement of the ratio of branching fractions B(B 0 ? D * + ? ?? ? )/B(B 0 ? D * + ? ?? ? )
URL : https://hal.archives-ouvertes.fr/in2p3-01169706

, Phys. Rev. Lett, vol.115, issue.11, p.159901, 2015.

W. Altmannshofer, P. Stangl, and D. M. Straub, Interpreting Hints for Lepton Flavor Universality Violation

, Phys. Rev, vol.96, issue.5, p.55008, 2017.

M. Guido-d'amico, P. Nardecchia, F. Panci, A. Sannino, R. Strumia et al.,

, JHEP, vol.09, p.10, 2017.

G. Hiller and I. Nisandzic,

R. and R. ,

, Phys. Rev, vol.96, issue.3, p.35003, 2017.

L. Geng, B. Grinstein, S. Jäger, J. M. Camalich, X. Ren et al.,

, Towards the discovery of new physics with lepton-universality ratios of b ? s decays, Phys. Rev, vol.96, issue.9, p.93006, 2017.

T. Hurth, F. Mahmoudi, D. M. Santos, and S. Neshatpour, Lepton nonuniversality in exclusive b?s decays
URL : https://hal.archives-ouvertes.fr/hal-01669709

, Phys. Rev, vol.96, issue.9, p.95034, 2017.

M. Ciuchini, A. M. Coutinho, M. Fedele, E. Franco, A. Paul et al.,

, On Flavourful Easter eggs for New Physics hunger and Lepton Flavour Universality violation

, Eur. Phys. J, vol.77, issue.10, p.688, 2017.

D. V. Volkov and V. P. Akulov, Is the Neutrino a Goldstone Particle?, Phys. Lett, vol.46, pp.109-110, 1973.

J. Wess and B. Zumino,

, Supergauge Transformations in Four-Dimensions

, Nucl. Phys, vol.70, p.24, 1974.

Y. A. Golfand and E. P. Likhtman, Extension of the Algebra of Poincare Group Generators and Violation of p Invariance, Pisma Zh. Eksp. Teor. Fiz, vol.13, pp.323-326, 1971.

J. Gervais and B. Sakita, Field Theory Interpretation of Supergauges in Dual Models

, Nucl. Phys, vol.34, pp.632-639, 1971.

R. Glennys, P. Farrar, and . Fayet, Phenomenology of the Production, Decay, and Detection of New Hadronic States Associated with Supersymmetry

, Phys. Lett, vol.76, pp.575-579, 1978.

P. Minkowski,

, ? e? at a Rate of One Out of 10 9 Muon Decays?, Phys. Lett, vol.67, pp.421-428, 1977.

N. Rabindra, G. Mohapatra, and . Senjanovic,

, Neutrino Mass and Spontaneous Parity Nonconservation

, Phys. Rev. Lett, vol.44, p.231, 1979.

M. Gell-mann, P. Ramond, and R. Slansky, Complex Spinors and Unified Theories

, Conf. Proc, vol.790927, pp.315-321, 1979.

T. Yanagida, Horizontal Symmetry and Masses of Neutrinos

, Prog. Theor. Phys, vol.64, p.1103, 1980.

M. Drewes,

, The Phenomenology of Right Handed Neutrinos

, Int. J. Mod. Phys, vol.22, p.1330019, 2013.

T. Appelquist, H. Cheng, and B. A. Dobrescu, Bounds on universal extra dimensions

, Phys. Rev, vol.64, p.35002, 2001.

T. Kaluza,

, Zum Unitätsproblem der Physik

. Sitzungsber and . Preuss, Akad. Wiss. Berlin (Math. Phys.), pp.966-972, 1921.

O. Klein, Quantentheorie und fünfdimensionale relativitätstheorie

, Zeitschrift für Physik A Hadrons and Nuclei, vol.37, p.1926

G. Servant, M. P. Timothy, and . Tait, Is the lightest Kaluza-Klein particle a viable dark matter candidate?, Nucl. Phys, vol.650, pp.391-419, 2003.

J. Saito, Relics From the Early Kaluza-Klein Universe

, Prog. Theor. Phys, vol.77, p.322, 1987.

W. Edward, R. Kolb, and . Slansky, Dimensional Reduction in the Early Universe: Where Have the Massive Particles Gone?, Phys. Lett, vol.135, p.378, 1984.

J. L. Hewett and T. G. Rizzo, Much ado about leptoquarks: A Comprehensive analysis

, Phys. Rev, vol.56, pp.5709-5724, 1997.

C. Jogesh, A. Pati, and . Salam,

, Lepton Number as the Fourth Color

, Phys. Rev, vol.10, pp.275-289, 1974.

C. Jogesh, A. Pati, and . Salam, Is Baryon Number Conserved?, Phys. Rev. Lett, vol.31, pp.661-664, 1973.

C. Jogesh, A. Pati, and . Salam,

, Unified Lepton-Hadron Symmetry and a Gauge Theory of the Basic Interactions

, Phys. Rev, vol.8, pp.1240-1251, 1973.

G. G. Ross,

W. Buchmuller and D. Wyler, Constraints on SU(5) Type Leptoquarks

, Phys. Lett, vol.177, pp.377-382, 1986.

G. Senjanovic and A. Sokorac,

, Light Leptoquarks in SO, issue.10

, Z. Phys, vol.20, p.255, 1983.

H. Paul, B. Frampton, and . Lee,

, SU(15) GRAND UNIFICATION

, Phys. Rev. Lett, vol.64, p.619, 1990.

H. Paul, T. W. Frampton, and . Kephart, Higgs sector and proton decay in su(15) grand unification

, Phys. Rev. D, vol.42, pp.3892-3894, 1990.

H. Paul and . Frampton, Light leptoquarks as possible signature of strong electroweak unification, Mod. Phys. Lett, vol.7, pp.559-562, 1992.

H. Murayama and T. Yanagida, A viable SU(5) GUT with light leptoquark bosons

, Mod. Phys. Lett, vol.7, pp.147-152, 1992.

J. L. Hewett and T. G. Rizzo,

, Don ' t stop thinking about leptoquarks: Constructing new models

, Phys. Rev, vol.58, p.55005, 1998.

S. S. Gershtein, A. A. Likhoded, and A. I. Onishchenko,

, TeV-scale leptoquarks from GUTs/string/M-theory unification

, Phys. Rept, vol.320, pp.159-173, 1999.

I. Dorsner and P. F. Perez, Unification without supersymmetry: Neutrino mass, proton decay and light leptoquarks, Nucl. Phys, vol.723, pp.53-76, 2005.

E. Farhi and L. Susskind, Technicolor. Phys. Rept, vol.74, p.277, 1981.

E. Eichten, I. Hinchliffe, K. D. Lane, and C. Quigg, Super Collider Physics

, Addendum: Rev. Mod. Phys, vol.56, p.1065, 1984.

S. Dimopoulos and L. Susskind,

, Nucl. Phys, vol.155, pp.237-252, 1979.

S. Dimopoulos,

, Nucl. Phys, vol.168, pp.69-92, 1980.

H. Georgi and S. L. Glashow, Unextended hypercolor and unification

, Phys. Rev. Lett, vol.47, pp.1511-1513, 1981.

W. Buchmuller,

, Composite Quarks and Leptons

, Acta Phys. Austriaca Suppl, vol.27, pp.517-595, 1985.

B. Schrempp and F. Schrempp,

S. U. Confining, )-l X SU(2)-r Gauge Model of the Weak Interactions

, Nucl. Phys, vol.231, pp.109-138, 1984.

L. F. Abbott and E. Farhi, Are the Weak Interactions Strong?, Phys. Lett, vol.101, pp.69-72, 1981.

L. F. Abbott and E. Farhi, BIBLIOGRAPHY A Confining Model of the Weak Interactions

, Nucl. Phys, vol.189, pp.547-556, 1981.

C. Jogesh and . Pati, A Model for a Unification of Scales: From M(planck) to M(?)

, Phys. Lett, vol.228, pp.228-234, 1989.

B. Schrempp, F. Schrempp, and . Light-leptoquarks,

, Phys. Lett, vol.153, pp.101-107, 1985.

J. Wudka, Composite leptoquarks

, Physics Letters B, vol.167, issue.3, pp.337-342, 1986.

D. Beirevi, S. Fajfer, N. Konik, O. Sumensari-;-r-k, and R. , Leptoquark model to explain the B-physics anomalies

, Phys. Rev, vol.94, issue.11, p.115021, 2016.

A. Crivellin, D. Müller, and T. Ota, Simultaneous explanation of R(D () ) and bs + : the last scalar leptoquarks standing, JHEP, 2017.

U. Mahanta, Implications of BNL measurement of delta a(mu) on a class of scalar leptoquark interactions

, Eur. Phys. J, vol.21, pp.171-173, 2001.

K. Cheung, Muon anomalous magnetic moment and leptoquark solutions

, Phys. Rev, vol.64, p.33001, 2001.

A. Crivellin, D. Müller, A. Signer, and Y. Ulrich,

, Correlating lepton flavor universality violation in B decays with ? ? e? using leptoquarks, Phys. Rev, vol.97, issue.1, p.15019, 2018.

D. Beirevi, O. Sumensari-;-k-<-r-sm-k-and-r-exp-k-*-<-r-sm-k-*, and . Jhep, A leptoquark model to accommodate R exp, vol.08, p.104, 2017.

D. Beirevi, N. Konik, O. Sumensari, and R. Z. Funchal,

, Palatable Leptoquark Scenarios for Lepton Flavor Violation in Exclusive b ? s 1 2 modes, JHEP, vol.11, p.35, 2016.

M. Ivo-de, G. Varzielas, and . Hiller, Clues for flavor from rare lepton and quark decays

, JHEP, vol.06, p.72, 2015.

I. Dorner, S. Fajfer, A. Greljo, J. F. Kamenik, and N. Konik,

, Phys. Rept, vol.641, pp.1-68, 2016.

S. T. Petcov,

, The Processes mu -> e Gamma, mu -> e e anti-e, Neutrino' -> Neutrino gamma in the Weinberg-Salam Model with Neutrino Mixing

. J. Sov, Nucl. Phys, vol.25, p.340, 1977.

M. Samoil, S. T. Bilenky, B. Petcov, and . Pontecorvo, Lepton Mixing, mu -> e + gamma Decay and Neutrino Oscillations

, Phys. Lett, vol.67, p.309, 1977.

A. Abada, C. Biggio, F. Bonnet, M. B. Gavela, and T. Hambye, Low energy effects of neutrino masses
URL : https://hal.archives-ouvertes.fr/hal-00166003

, JHEP, vol.12, p.61, 2007.

S. Antusch, C. Biggio, E. Fernandez-martinez, M. B. Gavela, and J. Lopez-pavon, Unitarity of the Leptonic Mixing Matrix. JHEP, vol.10, p.84, 2006.

H. Robert, P. S. Bernstein, and . Cooper, Charged Lepton Flavor Violation: An Experimenter's Guide

, Phys. Rept, vol.532, pp.27-64, 2013.

P. Depommier, New limit on the decay ? + ? e + ?

, Phys. Rev. Lett, vol.39, pp.1113-1116, 1977.

A. Van-der-schaaf, R. Engfer, H. P. Povel, W. Dey, H. K. Walter et al., A search for the decay ? + ? e + ?, Nuclear Physics A, vol.340, issue.2, pp.249-270, 1980.

W. W. Kinnison, A Search for ? + ? e + ?

, Phys. Rev, vol.25, p.2846, 1982.

R. D. Bolton,

, Phys. Rev. D, vol.38, pp.2077-2101, 1988.

M. L. Brooks, New limit for the family number nonconserving decay mu+ -> e+ gamma

, Phys. Rev. Lett, vol.83, pp.1521-1524, 1999.

A. M. Baldini, Search for the lepton flavour violating decay ? + ? e + ? with the full dataset of the MEG experiment

, Eur. Phys. J, vol.76, issue.8, p.434, 2016.

A. M. Baldini,

. Meg-upgrade-proposal,

A. M. Baldini, The design of the MEG II experiment

, Eur. Phys. J, vol.78, issue.5, p.380, 2018.

S. M. Korenchenko, B. F. Kostin, G. Mitselmakher, K. G. Nekrasov, and V. S. Smirnov, Search for mu+ ->

, Zh. Eksp. Teor. Fiz, vol.43, issue.1, 1976.

R. D. Bolton, Search for the muon-number-nonconserving decay ? ? e + e + e ?

, Phys. Rev. Lett, vol.53, pp.1415-1418, 1984.

W. Bertl, A new upper limit for the decay ? + ? e + e + e ?, vol.140, pp.299-303, 1984.

U. Bellgardt, Search for the decay ? + ? e + e + e ?, vol.299, pp.1-6, 1988.

V. A. Baranov, Search for mu+ -> e+ e+ e-decay

. J. Sov, Nucl. Phys, vol.53, p.1302, 1991.

A. Blondel, Research Proposal for an Experiment to Search for the Decay ? ? eee, 2013.

D. A. Bryman, M. Blecher, K. Gotow, and R. J. Powers,

, Phys. Rev. Lett, vol.28, pp.1469-1471, 1972.

A. Badertscher, Upper limit for muon-electron conversion in sulfur

, Phys. Rev. Lett, vol.39, pp.1385-1387, 1977.

A. Badertscher, A search for muon-electron and muon-positron conversion in sulfur, Nuclear Physics A, vol.377, issue.2, pp.406-440, 1982.

S. Ahmad, Search for muon-electron and muon-positron conversion

, Phys. Rev. D, vol.38, pp.2102-2120, 1988.

C. Dohmen, Test of lepton-flavour conservation in ? ? econversion on titanium, Physics Letters B, vol.317, issue.4, pp.631-636, 1993.

W. Honecker,

, Phys. Rev. Lett, vol.76, pp.200-203, 1996.

Y. Kuno,

, An Experimental Search for a ?? N ? e ? N Conversion at Sensitivity of the Order of 10 ?18 with a Highly Intense Muon Source

. Truong-minh-nguyen, Search for ? ? e conversion with DeeMe experiment at J-PARC MLF

, PoS, vol.2015, p.60, 2015.

A. Badertscher, Search for ? ? ? e + conversion on sulfur, Physics Letters B, vol.79, issue.4, pp.371-375, 1978.

A. Znd and . Badertscher, New upper limits for muon-electron conversion in sulfur

L. Al and N. Cimento, , vol.28, pp.401-408, 1971.

J. Kaulard, Improved limit on the branching ratio of ? ? ? e + conversion on titanium, Physics Letters B, vol.422, issue.1, pp.334-338, 1998.

J. Schechter and J. W. Valle, Neutrinoless Double beta Decay in SU(2) x U(1) Theories

, Phys. Rev, vol.25, p.2951, 1982.

S. Ahmed, Update of the search for the neutrinoless decay ? ? ??

, Phys. Rev. D, vol.61, p.71101, 2000.

B. Aubert, The BaBar detector
URL : https://hal.archives-ouvertes.fr/in2p3-00010977

, Nucl. Instrum. Meth, vol.479, pp.1-116, 2002.

A. Abashian, The Belle Detector

, Nucl. Instrum. Meth, vol.479, pp.117-232, 2002.

R. Aaij, Search for the lepton flavour violating decay ? ? ? ? ? ? + ? ?
URL : https://hal.archives-ouvertes.fr/in2p3-01070299

, JHEP, vol.02, p.121, 2015.

R. Aaij,

, Searches for violation of lepton flavour and baryon number in tau lepton decays at LHCb, Phys. Lett, vol.724, pp.36-45, 2013.

G. Aad,

, Probing lepton flavour violation via neutrinoless ? ?? 3? decays with the ATLAS detector, Eur. Phys. J, vol.76, issue.5, p.232, 2016.

B. Aubert, Searches for Lepton Flavor Violation in the Decays tau+--> e+-gamma and tau+--> mu+-gamma
URL : https://hal.archives-ouvertes.fr/in2p3-00420567

, Phys. Rev. Lett, vol.104, p.21802, 2010.

K. Hayasaka, Search for Lepton Flavor Violating Tau Decays into Three Leptons with 719 Million Produced Tau+Tau-Pairs

, Phys. Lett, vol.687, pp.139-143, 2010.

K. Hayasaka, BIBLIOGRAPHY New Search for tau -> mu gamma and tau -> e gamma Decays at Belle

, Phys. Lett, vol.666, pp.16-22, 2008.

J. P. Lees, Limits on tau Lepton-Flavor Violating Decays in three charged leptons
URL : https://hal.archives-ouvertes.fr/in2p3-00492264

, Phys. Rev, vol.81, p.111101, 2010.

Y. Miyazaki, Search for lepton flavor violating tau-decays into l-eta, l-eta-prime and l-pi0

, Phys. Lett, vol.648, pp.341-350, 2007.

B. Aubert, Search for Lepton Flavor Violating Decays ? ± ? ± ? 0 , ± ?, ± ?
URL : https://hal.archives-ouvertes.fr/in2p3-00363111

, Phys. Rev. Lett, vol.98, p.61803, 2007.

Y. Miyazaki, Search for Lepton Flavor Violating tau-Decays into l-K0s and l-K0sK0s

, Phys. Lett, vol.692, pp.4-9, 2010.

Y. Miyazaki, Search for Lepton-Flavor-Violating tau Decays into a Lepton and a Vector Meson, Phys. Lett, vol.699, pp.251-257, 2011.

Y. Nishio, Search for lepton-flavor-violating tau -> l V0 decays at Belle

, Phys. Lett, vol.664, pp.35-40, 2008.

B. Aubert, Search for Lepton Flavor Violating Decays tau -> l-K0(s) with the BABAR Experiment, Phys. Rev, vol.79, p.12004, 2009.

B. Aubert,

K. and -. , Phys. Rev. Lett, vol.103, p.21801, 2009.

T. Aushev, Physics at Super B Factory, 2010.

J. Bennett,

, Belle II Physics Prospects, Status and Schedule

, J. Phys. Conf. Ser, vol.770, issue.1, p.12044, 2016.

J. Z. Bai,

B. The and . Detector,

, Nucl. Instrum. Meth, vol.344, pp.319-334, 1994.

J. Z. Bai,

B. The and . Upgrade,

, Nucl. Instrum. Meth, vol.458, pp.627-637, 2001.

M. Ablikim, Design and Construction of the BESIII Detector

, Nucl. Instrum. Meth, vol.614, pp.345-399, 2010.

M. N. Achasov, Spherical neutral detector for VEPP-2M collider

, Nucl. Instrum. Meth, vol.449, pp.125-139, 2000.

G. Viehhauser,

, Nucl. Instrum. Meth, vol.462, pp.146-151, 2001.

K. Lang,

, A Straw drift chamber spectrometer for studies of rare kaon decays

, Nucl. Instrum. Meth, vol.522, pp.274-293, 2004.

A. Alves and J. , The LHCb Detector at the LHC
URL : https://hal.archives-ouvertes.fr/in2p3-00312316

, JINST, vol.3, p.8005, 2008.

M. N. Achasov, Search for Lepton Flavor Violation Process e + e ? ? e? in the Energy Region s = 984 -1060 MeV and ? ? e? Decay

, Phys. Rev, vol.81, p.57102, 2010.

M. Ablikim, Search for the lepton flavor violation process J/? ? e? at BESIII

, Phys. Rev, vol.87, p.112007, 2013.

M. Ablikim, Search for the lepton flavor violation processes J / psi ->

, Phys. Lett, vol.598, pp.172-177, 2004.

W. Love, Search for Lepton Flavor Violation in Upsilon Decays

, Phys. Rev. Lett, vol.101, 2008.

D. Ambrose,

, New Limit on Muon and Electron Lepton Number Violation from K 0

. L-?-?-±-e-?-decay,

, Phys. Rev. Lett, vol.81, pp.5734-5737, 1998.

R. Aaij, Search for the lepton-flavor-violating decays B 0 s ? e ± ? ? and B 0 ? e ± ? ?

, Phys. Rev. Lett, vol.111, p.141801, 2013.

B. Aubert, Searches for the decays B 0 ? l ± ? ? and B + ? l + ? (l=e, ?) using hadronic tag reconstruction, Phys. Rev, vol.77, p.91104, 2008.
URL : https://hal.archives-ouvertes.fr/in2p3-00222773

B. Aubert, Measurements of branching fractions, rate asymmetries, and angular distributions in the rare decays
URL : https://hal.archives-ouvertes.fr/in2p3-00084544

, Phys. Rev, vol.73, p.92001, 2006.

J. P. Lees, A search for the decay modes B +? ? h +? ? +? l
URL : https://hal.archives-ouvertes.fr/in2p3-00687971

, Phys. Rev, vol.86, p.12004, 2012.

P. Abreu, Search for lepton flavor number violating Z0 decays

, Z. Phys, vol.73, pp.243-251, 1997.

S. Banerjee, B. Bhattacherjee, M. Mitra, and M. Spannowsky, The Lepton Flavour Violating Higgs Decays at the HL-LHC and the ILC
URL : https://hal.archives-ouvertes.fr/hal-01341910

, JHEP, vol.07, p.59, 2016.

S. Weinberg,

, Physica A: Statistical Mechanics and its Applications, vol.96, issue.1, pp.327-340, 1979.

W. Buchmuller and D. Wyler,

, Effective Lagrangian Analysis of New Interactions and Flavor Conservation

, Nucl. Phys, vol.268, pp.621-653, 1986.

C. N. Leung, S. T. Love, and S. Rao, Low-Energy Manifestations of a New Interaction Scale

, Z. Phys, vol.31, p.433, 1986.

T. Appelquist and J. Carazzone,

I. Singularities and M. Fields,

, Phys. Rev, vol.11, p.2856, 1975.

M. Gell-mann and F. E. Low, Quantum electrodynamics at small distances

, Phys. Rev, vol.95, pp.1300-1312, 1954.

L. V. Ovsyannikov, General solution to the renormalization group equations

, Dokl. Akad. Nauk Ser. Fiz, vol.109, p.76, 1956.

K. Symanzik, Small distance behavior in field theory and power counting

, Commun. Math. Phys, vol.18, pp.227-246, 1970.

C. G. Callan, Broken scale invariance in scalar field theory

, Phys. Rev, vol.2, pp.1541-1547, 1970.

. Gerard-'t-hooft, Dimensional regularization and the renormalization group

, Nucl. Phys, vol.61, pp.455-468, 1973.

S. Weinberg, New approach to the renormalization group

, Phys. Rev, vol.8, pp.3497-3509, 1973.

A. Petermann,

, La normalisation des constantes dans la théorie des quantaNormalization of constants in the quanta theory

, Helv. Phys. Acta, vol.26, pp.499-520, 1953.

J. F. Ashmore, A Method of Gauge Invariant Regularization

, Lett. Nuovo Cim, vol.4, pp.289-290, 1972.

G. M. Cicuta and E. Montaldi, Analytic renormalization via continuous space dimension

, Lett. Nuovo Cim, vol.4, pp.329-332, 1972.

C. G. Bollini and J. J. Giambiagi, Lowest order divergent graphs in nu-dimensional space

, Phys. Lett, vol.40, pp.566-568, 1972.

C. G. Bollini and J. J. Giambiagi, Dimensional Renormalization: The Number of Dimensions as a Regularizing Parameter, Nuovo Cim, vol.12, pp.20-26, 1972.

M. J. Gerard-'t-hooft and . Veltman, Regularization and Renormalization of Gauge Fields

, Nucl. Phys, vol.44, pp.189-213, 1972.

M. J. Gerard-'t-hooft and . Veltman, Combinatorics of gauge fields

, Nucl. Phys, vol.50, pp.318-353, 1972.

W. A. Bardeen, A. J. Buras, D. W. Duke, and T. Muta,

, Deep Inelastic Scattering Beyond the Leading Order in Asymptotically Free Gauge Theories

, Phys. Rev, vol.18, p.3998, 1978.

T. Kinoshita, Mass singularities of Feynman amplitudes

, J. Math. Phys, vol.3, pp.650-677, 1962.

T. D. Lee and M. Nauenberg, Degenerate Systems and Mass Singularities

, Phys. Rev, vol.133, p.25, 1964.

D. J. Gross,

, Conf. Proc, vol.7507281, pp.141-250, 1975.

C. Dohmen, Test of lepton flavor conservation in mu -> e conversion on titanium

, Phys. Lett, vol.317, pp.631-636, 1993.

S. Weinberg and G. Feinberg, Electromagnetic Transitions Between mu Meson and Electron

, Phys. Rev. Lett, vol.3, pp.111-114, 1959.

U. Oruganti and . Shanker,

, Z Dependence of Coherent ?e Conversion Rate in Anomalous Neutrinoless Muon Capture, Phys. Rev, vol.20, p.1608, 1979.

A. Czarnecki, W. J. Marciano, and K. Melnikov, Coherent muon electron conversion in muonic atoms

, AIP Conf. Proc, vol.435, issue.1, pp.409-418, 1998.

V. Cirigliano, R. Kitano, Y. Okada, and P. Tuzon, On the model discriminating power of mu -> e conversion in nuclei

, Phys. Rev, vol.80, p.13002, 2009.

R. Kitano, M. Koike, and Y. Okada, Detailed calculation of lepton flavor violating muon electron conversion rate for various nuclei

, Phys. Rev, vol.66, p.96002, 2002.

T. S. Kosmas, G. K. Leontaris, and J. D. Vergados, Lepton flavor nonconservation

, Prog. Part. Nucl. Phys, vol.33, pp.397-448, 1994.

H. C. Chiang, E. Oset, T. S. Kosmas, A. Faessler, and J. D. Vergados,

, Nucl. Phys, vol.559, pp.526-542, 1993.

V. Cirigliano, S. Davidson, and Y. Kuno,

, Phys. Lett, vol.771, pp.242-246, 2017.

, Sacha Davidson. ? ? e? and matching at m W

, Eur. Phys. J, vol.76, issue.7, p.370, 2016.

A. Crivellin, S. Davidson, G. M. Pruna, and A. Signer,

, Renormalisation-group improved analysis of ? ? e processes in a systematic effective-fieldtheory approach

, JHEP, p.117, 2017.

A. Crivellin, D. Francesco, M. Eramo, and . Procura, New Constraints on Dark Matter Effective Theories from Standard Model Loops

, Phys. Rev. Lett, vol.112, p.191304, 2014.

U. Haisch and F. Kahlhoefer, On the importance of loop-induced spin-independent interactions for dark matter direct detection

, JCAP, vol.1304, p.50, 2013.

A. Pich, Summer School in Theoretical Physics, NATO Advanced Study Institute, 68th session, Effective field theory: Course. BIBLIOGRAPHY In Probing the standard model of particle interactions. Proceedings, pp.949-1049, 1997.

R. Machleidt and D. R. Entem, Chiral effective field theory and nuclear forces

, Phys. Rept, vol.503, pp.1-75, 2011.

P. Klos, J. Menéndez, D. Gazit, and A. Schwenk,

, Large-scale nuclear structure calculations for spin-dependent WIMP scattering with chiral effective field theory currents

, Phys. Rev, vol.88, issue.8, p.83516, 2013.

V. Cirigliano, M. L. Graesser, and G. Ovanesyan, WIMP-nucleus scattering in chiral effective theory, JHEP, vol.10, p.25, 2012.

M. Hoferichter, P. Klos, and A. Schwenk,

, Chiral power counting of one-and two-body currents in direct detection of dark matter, Phys. Lett, vol.746, pp.410-416, 2015.

A. Crivellin, M. Hoferichter, and M. Procura, Accurate evaluation of hadronic uncertainties in spin-independent WIMP-nucleon scattering: Disentangling two-and three-flavor effects

, Phys. Rev, vol.89, p.54021, 2014.

V. Cirigliano, W. Dekens, E. Mereghetti, and A. Walker-loud, Neutrinoless double-decay in effective field theory: The light-Majorana neutrino-exchange mechanism

, Phys. Rev, vol.97, issue.6, p.65501, 2018.

A. Bartolotta and M. J. Ramsey-musolf,

, Coherent ? ? e conversion at next-to-leading order

, Phys. Rev, vol.98, issue.1, p.15208, 2018.

J. Engel, S. Pittel, and P. Vogel, Nuclear physics of dark matter detection

, Int. J. Mod. Phys, vol.1, pp.1-37, 1992.

A. L. Fitzpatrick, W. Haxton, E. Katz, N. Lubbers, and Y. Xu, The Effective Field Theory of Dark Matter Direct Detection

, JCAP, vol.1302, p.4, 2013.

J. Engel, M. T. Ressell, I. S. Towner, and W. E. Ormand, Response of mica to weakly interacting massive particles

, Phys. Rev, vol.52, pp.2216-2221, 1995.

M. E. Peskin and D. V. Schroeder, An Introduction to quantum field theory

. Addison-wesley, , 1995.

J. D. Bjorken and S. D. Drell, Relativistic quantum fields, 1965.

M. E. Rose, Relativistic electron theory

, American Journal of Physics, vol.29, issue.12, pp.866-866, 1961.

C. Itzykson and J. B. Zuber, Quantum Field Theory. International Series In Pure and Applied Physics, 1980.

H. D. Vries, C. W. De, C. Jager, and . Vries, Nuclear charge and magnetization density distribution parameters from elastic electron scattering

, Atom. Data Nucl. Data Tabl, vol.36, pp.495-536, 1987.

M. Cirelli, E. D. Nobile, and P. Panci, Tools for model-independent bounds in direct dark matter searches
URL : https://hal.archives-ouvertes.fr/cea-01073642

, JCAP, p.19, 1310.

T. Suzuki, D. F. Measday, and J. P. Roalsvig, Total Nuclear Capture Rates for Negative Muons

, Phys. Rev, vol.35, p.2212, 1987.

V. A. Bednyakov and F. Simkovic, Nuclear spin structure in dark matter search: The Zero momentum transfer limit, Fiz. Elem. Chast. Atom, vol.36, pp.131-152, 2005.

V. A. Bednyakov and F. Simkovic, Nuclear spin structure in dark matter search: The Finite momentum transfer limit, Phys. Part. Nucl, vol.37, pp.106-128, 2006.

K. J. Rosman, Pure Appl.Chem, vol.71, pp.1593-1607, 1999.

, Phys. Rev, vol.40, pp.3132-3135, 1989.

G. Prezeau, A. Kurylov, M. Kamionkowski, and P. Vogel, New contribution to wimp-nucleus scattering

, Phys. Rev. Lett, vol.91, p.231301, 2003.

C. Körber, A. Nogga, and J. De-vries, First-principle calculations of Dark Matter scattering off light nuclei

, Phys. Rev, vol.96, issue.3, p.35805, 2017.

F. Romeo, Search for leptoquark-like signatures with the ATLAS and CMS detectors

, Nucl. Part. Phys. Proc, pp.638-643, 2016.

. Vardan-khachatryan, Search for pair production of first and second generation leptoquarks in proton-proton collisions at s = 8TeV

, Phys. Rev, vol.93, issue.3, p.32004, 2016.

G. Aad, Searches for scalar leptoquarks in pp collisions at s = 8 TeV with the ATLAS detector, Eur. Phys. J, vol.76, issue.1, 2016.
URL : https://hal.archives-ouvertes.fr/in2p3-01185532

S. Bellucci, M. Lusignoli, and L. Maiani, Leading Logarithmic Corrections to the Weak Leptonic and Semileptonic Low-energy Hamiltonian

, Nucl. Phys, vol.189, pp.329-346, 1981.

G. Buchalla, A. J. Buras, and M. K. Harlander, The Anatomy of Epsilon-prime / Epsilon in the Standard Model

, Nucl. Phys, vol.337, pp.313-362, 1990.

. Vardan-khachatryan, Search for heavy Majorana neutrinos in e ± e ± + jets and e ± ? ± + jets events in proton-proton collisions at s = 8 TeV

, JHEP, vol.04, p.169, 2016.

G. Aad, Search for heavy Majorana neutrinos with the ATLAS detector in pp collisions at s = 8
URL : https://hal.archives-ouvertes.fr/in2p3-01166353

. Tev,

, JHEP, vol.07, p.162, 2015.

E. Arganda, A. M. Curiel, M. J. Herrero, and D. Temes, Lepton flavor violating Higgs boson decays from massive seesaw neutrinos
URL : https://hal.archives-ouvertes.fr/hal-00004324

, Phys. Rev, vol.71, p.35011, 2005.

M. , Flavour physics of leptons and dipole moments

, Eur. Phys. J, vol.57, pp.13-182, 2008.

Y. Kuno, A search for muon-to-electron conversion at J-PARC: The COMET experiment

, PTEP, pp.22-23, 2013.

R. M. Carey, Proposal to search for ? ? N ? e ? N with a single event sensitivity below 10 ?16, 2008.

R. Aaij, Search for the lepton-flavour violating decay D 0 ? e ± ? ?
URL : https://hal.archives-ouvertes.fr/in2p3-01236676

, Phys. Lett, vol.754, pp.167-175, 2016.

R. Appel, Search for lepton flavor violation in K+ decays

, Phys. Rev. Lett, vol.85, pp.2877-2880, 2000.

J. P. Lees, Searches for Rare or Forbidden Semileptonic Charm Decays
URL : https://hal.archives-ouvertes.fr/in2p3-00614119

, Phys. Rev, vol.84, p.72006, 2011.

H. Georgi, Effective field theory

, Ann. Rev. Nucl. Part. Sci, vol.43, pp.209-252, 1993.

V. Aneesh and . Manohar, Introduction to Effective Field Theories

, Les Houches summer school: EFT in Particle Physics and Cosmology Les Houches, 2017.

A. Pich,

, Effective Field Theory with Nambu-Goldstone Modes

, Les Houches summer school: EFT in Particle Physics and Cosmology Les Houches, 2017.

S. Davidson, D. C. Bailey, and B. A. Campbell, BIBLIOGRAPHY Model independent constraints on leptoquarks from rare processes

, Z. Phys, vol.61, pp.613-644, 1994.

D. Black, T. Han, H. He, and M. Sher,

, Phys. Rev, vol.66, p.53002, 2002.

M. Carpentier and S. Davidson, Constraints on two-lepton
URL : https://hal.archives-ouvertes.fr/in2p3-00508841

, Eur. Phys. J, vol.70, pp.1071-1090, 2010.

Y. Cai and M. A. Schmidt,

, A Case Study of the Sensitivity to LFV Operators with Precision Measurements and the LHC

, JHEP, vol.02, p.176, 2016.

D. E. Hazard and A. A. Petrov, Lepton flavor violating quarkonium decays

, Phys. Rev, vol.94, issue.7, p.74023, 2016.

D. E. Hazard and A. A. Petrov, Radiative lepton flavor violating B, D, and K decays, 2017.

G. Buchalla, A. J. Buras, and M. E. Lautenbacher, Weak decays beyond leading logarithms

, Rev. Mod. Phys, vol.68, pp.1125-1144, 1996.

Y. Sato,

, Phys. Rev, vol.94, issue.7, p.72007, 2016.

J. P. Lees, Measurement of an Excess ofB ? D ( * ) ? ?? ? Decays and Implications for Charged Higgs Bosons

, Phys. Rev, vol.88, issue.7, p.72012, 2013.

S. Descotes-genon, L. Hofer, J. Matias, and J. Virto, Global analysis of b ? s anomalies
URL : https://hal.archives-ouvertes.fr/hal-01386084

, JHEP, vol.06, p.92, 2016.

M. Ciuchini, M. Fedele, E. Franco, S. Mishima, A. Paul et al.,

. B-?-k, * + ? decays at large recoil in the Standard Model: a theoretical reappraisal, JHEP, vol.06, p.116, 2016.

S. Jäger and J. M. Camalich,

, Reassessing the discovery potential of the B ? K * + ? decays in the large-recoil region, SM challenges and BSM opportunities

, Phys. Rev, vol.93, issue.1, p.14028, 2016.

G. Hiller and M. Schmaltz,

R. , s physics beyond the standard model opportunities

, Phys. Rev, vol.90, p.54014, 2014.

C. Bobeth, G. Hiller, and D. Van-dyk, General analysis ofB ?K ( * ) + ? decays at low recoil

, Phys. Rev, vol.87, issue.3, p.34016, 2013.

W. Altmannshofer, P. Paradisi, and D. M. Straub, Model-Independent Constraints on New Physics in b ? s Transitions

, JHEP, issue.04, p.8, 2012.

S. Davidson, L. Michelangelo, and . Mangano, Stephane Perries, and Viola Sordini. Lepton Flavour Violating top decays at the LHC

, Eur. Phys. J, vol.75, issue.9, p.450, 2015.

O. Shanker, Flavour violation, scalar particles and leptoquarks

, Nucl. Phys, vol.206, p.253, 1982.

, Margarete Herz. Bounds on leptoquark and supersymmetric, R parity violating interactions from meson decays

J. Bijnens, G. Colangelo, G. Ecker, and J. Gasser, Semileptonic kaon decays, pp.315-389, 1994.

R. Gupta, Calculations of hadronic matrix elements using lattice QCD

A. X. Daping-du, S. El-khadra, A. S. Gottlieb, J. Kronfeld, E. Laiho et al.,

, Phenomenology of semileptonic B-meson decays with form factors from lattice QCD, Phys. Rev, vol.93, issue.3, p.34005, 2016.

J. A. Bailey, |V ub | from B ? ? ? decays and (2+1)-flavor lattice QCD

, Phys. Rev, vol.92, issue.1, p.14024, 2015.

J. A. Bailey,

B. , Decay Form Factors from Three-Flavor Lattice QCD

, Phys. Rev, vol.93, issue.2, p.25026, 2016.

P. Ball and R. Zwicky, New results on B ? ?, K, ? decay formfactors from light-cone sum rules

, Phys. Rev, vol.71, p.14015, 2005.

X. Xing-dao-guo, H. Hao, M. Ke, X. Zhao, and . Li, Looking for New Physics via Semi-leptonic and Leptonic rare decays of D and D s, Chin. Phys, vol.41, issue.9, p.93107, 2017.

A. Crivellin, L. Hofer, J. Matias, U. Nierste, S. Pokorski et al.,

, Lepton-flavour violating B decays in generic Z models

, Phys. Rev, vol.92, issue.5, p.54013, 2015.

A. Crivellin, D. Giancarlo, M. Ambrosio, L. C. Hoferichter, and . Tunstall, Violation of lepton flavor and lepton flavor universality in rare kaon decays, Phys. Rev, vol.93, issue.7, p.74038, 2016.

V. Ilisie, Concepts in Quantum Field Theory

. Springer, , pp.978-981, 2016.

B. Grzadkowski, M. Iskrzynski, M. Misiak, and J. Rosiek, Dimension-Six Terms in the Standard Model Lagrangian, JHEP, vol.10, p.85, 2010.

R. Alonso, E. E. Jenkins, A. V. Manohar, and M. Trott,

, Renormalization Group Evolution of the Standard Model Dimension Six Operators III: Gauge Coupling Dependence and Phenomenology

, JHEP, vol.04, p.159, 2014.

S. Bellucci, M. Lusignoli, and L. Maiani, Nucl. Phys. B, vol.189, p.329, 1981.

G. Buchalla, A. J. Buras, and M. K. Harlander, Nucl. Phys. B, vol.337, p.313, 1990.

S. Davidson and A. Saporta,

G. Belanger, F. Boudjema, A. Pukhov, and A. Semenov, Dark matter direct detection rate in a generic model with micrOMEGAs 2
URL : https://hal.archives-ouvertes.fr/hal-00350674

, Comput. Phys. Commun, vol.180, pp.747-767, 2009.

A. Airapetian, Precise determination of the spin structure function g(1) of the proton, deuteron and neutron

, Phys. Rev, vol.75, p.12007, 2007.

M. Hoferichter, J. Ruiz-de-elvira, B. Kubis, and U. Meissner, High-Precision Determination of the Pion-Nucleon Term from Roy-Steiner Equations, Phys. Rev. Lett, vol.115, p.92301, 2015.

P. Junnarkar and A. Walker-loud,

, Scalar strange content of the nucleon from lattice QCD

, Phys. Rev, vol.87, p.114510, 2013.

K. A. Olive, Review of Particle Physics

, Chin. Phys, vol.38, p.90001, 2014.

H. Cheng,

, Low-energy Interactions of Scalar and Pseudoscalar Higgs Bosons With Baryons

, Phys. Lett, vol.219, pp.347-353, 1989.

T. Bhattacharya, V. Cirigliano, R. Gupta, H. Lin, and B. Yoon, Neutron Electric Dipole Moment and Tensor Charges from Lattice QCD

, Phys. Rev. Lett, vol.115, issue.21, p.212002, 2015.

J. Green,

, Up, down, and strange nucleon axial form factors from lattice QCD

, Phys. Rev, vol.95, issue.11, p.114502, 2017.

S. Durr, Lattice computation of the nucleon scalar quark contents at the physical point, BIBLIOGRAPHY Phys. Rev. Lett, vol.116, issue.17, p.172001, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01259005

J. Ruiz-de-elvira, M. Hoferichter, B. Kubis, and U. Meissner, Extracting the ?-term from low-energy pion-nucleon scattering

, J. Phys, vol.45, issue.2, p.24001, 2018.

J. M. Alarcon, J. M. Camalich, and J. A. Oller,

, The chiral representation of the ?N scattering amplitude and the pion-nucleon sigma term, Phys. Rev, vol.85, p.51503, 2012.

G. Marco-pruna and A. Signer,

, The ? ? e? decay in a systematic effective field theory approach with dimension 6 operators, JHEP, vol.10, p.14, 2014.

E. E. Jenkins, A. V. Manohar, and M. Trott,

, Renormalization Group Evolution of the Standard Model Dimension Six Operators II: Yukawa Dependence

, JHEP, vol.01, p.35, 2014.

J. L. Rosner, S. Stone, and R. S. Van-de-water, Leptonic Decays of Charged Pseudoscalar Mesons -2015, 2015.

S. Aoki,

, Eur. Phys. J, vol.77, issue.2, p.112, 2017.

A. Bazavov,

B. , D-meson leptonic decay constants from four-flavor lattice QCD

, Phys. Rev, vol.98, issue.7, p.74512, 2018.

A. Khodjamirian, T. Mannel, and N. Offen, Form-factors from light-cone sum rules with B-meson distribution amplitudes

, Phys. Rev, vol.75, p.54013, 2007.