B. J. Van-wees, H. Van-houten, C. Beenakker, J. G. Williamson, and L. P. ,

D. Kouwenhoven, C. T. Van-der-marel, and . Foxon, Quantized conductance of point contacts in a two-dimensional electron gas, Physical Review Letters, vol.60, issue.9, pp.848-850, 1988.

T. D-a-wharam, R. Thornton, M. Newbury, . Pepper, J. Ahmed et al., One-dimensional transport and the quantisation of the ballistic resistance, Journal of Physics C: Solid State Physics, vol.21, issue.8, pp.209-214, 1988.

E. A. Laird, F. Kuemmeth, G. A. Steele, K. Grove-rasmussen, J. Nygård et al., Quantum transport in carbon nanotubes, Reviews of Modern Physics, vol.87, issue.3, pp.703-764, 2015.

J. Waissman, M. Honig, S. Pecker, A. Benyamini, A. Hamo et al., Realization of pristine and locally tunable one-dimensional electron systems in carbon nanotubes, Nature Nanotechnology, vol.8, issue.8, pp.569-574, 2013.

C. Sayrin, I. Dotsenko, X. Zhou, B. Peaudecerf, T. Rybarczyk et al., Real-time quantum feedback prepares and stabilizes photon number states, Nature, vol.477, issue.7362, pp.73-77, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00637734

J. M. Raimond, M. Brune, and S. Haroche, Manipulating quantum entanglement with atoms and photons in a cavity, Reviews of Modern Physics, vol.73, issue.3, pp.565-582, 2001.

I. Dotsenko, M. Mirrahimi, M. Brune, S. Haroche, J. Raimond et al., Quantum feedback by discrete quantum nondemolition measurements: Towards on-demand generation of photon-number states, Physical Review A, vol.80, issue.1, p.13805, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00476111

L. Frunzio, A. Wallraff, D. Schuster, J. Majer, and R. Schoelkopf, Fabrication and Characterization of Superconducting Circuit QED Devices for Quantum Computation, IEEE Transactions on Appiled Superconductivity, vol.15, issue.2, pp.860-863, 2005.

. Mh-devoret, J. M. Wallraff, and . Martinis, Experimental Aspects of Quantum Computing, 2005.

M. Reagor, W. Pfaff, C. Axline, W. Reinier, N. Heeres et al.,

M. J. Hatridge, L. Frunzio, M. H. Devoret, L. Jiang, and R. J. ,

. Schoelkopf, Quantum memory with millisecond coherence in circuit QED, Physical Review B, vol.94, issue.1, p.14506, 2016.
URL : https://hal.archives-ouvertes.fr/cea-01485238

L. Childress, A. S. Sørensen, and M. D. Lukin, Mesoscopic cavity quantum electrodynamics with quantum dots, Physical Review A, vol.69, issue.4, p.42302, 2004.

X. Mi, D. Cady, P. Zajac, J. W-deelman, and . Petta, Strong coupling of a single electron in silicon to a microwave photon, Science, vol.355, issue.6321, pp.156-158, 2017.

A. Stockklauser, P. Scarlino, J. V. Koski, S. Gasparinetti, C. K. Andersen et al., Strong Coupling Cavity QED with Gate-Defined Double Quantum Dots Enabled by a High Impedance Resonator, Physical Review X, vol.7, issue.1, p.11030, 2017.

L. Bruhat, T. Cubaynes, J. J. Viennot, M. C. Dartiailh, M. M. Desjardins et al., Circuit QED with a quantum-dot charge qubit dressed by Cooper pairs, Physical Review B, vol.98, issue.15, p.155313, 2018.

T. H. Oosterkamp, L. P. Kouwenhoven, A. E. Koolen, N. C. Van-der, C. J. Vaart et al., Photon Sidebands of the Ground State and First Excited State of a Quantum Dot, Physical Review Letters, vol.78, issue.8, pp.1536-1539, 1997.

N. Shaji, C. B. Simmons, M. Thalakulam, L. J. Klein, H. Hua-qin et al., Spin blockade and lifetimeenhanced transport in a few-electron Si/SiGe double quantum dot, Nature Physics, vol.4, issue.7, pp.540-544, 2008.

C. Thelander, T. Mårtensson, M. T. Björk, B. J. Ohlsson, M. W. Larsson et al., Single-electron transistors in heterostructure nanowires, Applied Physics Letters, vol.83, issue.10, pp.2052-2054, 2003.

V. Mourik, K. Zuo, S. M. Frolov, S. R. Plissard, E. P. et al., Signatures of Majorana Fermions in Hybrid Superconductor-Semiconductor Nanowire Devices, Science, vol.336, issue.6084, pp.1003-1007, 2012.

J. Güttinger, T. Frey, C. Stampfer, T. Ihn, and K. Ensslin, Spin States in Graphene Quantum Dots, Physical Review Letters, vol.105, issue.11, p.116801, 2010.

N. Mason, Local Gate Control of a Carbon Nanotube Double Quantum Dot. Science, vol.303, pp.655-658, 2004.

P. Jarillo-herrero, J. A. Van-dam, and L. P. Kouwenhoven, Quantum supercurrent transistors in carbon nanotubes, Nature, vol.439, issue.7079, pp.953-956, 2006.

J. Cleuziou, W. Wernsdorfer, V. Bouchiat, T. Ondarçuhu, and M. Monthioux, Carbon nanotube superconducting quantum interference device, Nature Nanotechnology, vol.1, issue.1, pp.53-59, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00700071

L. Hofstetter, . Csonka, C. Nygard, and . Schonenberger, Cooper pair splitter realized in a two-quantum-dot Y-junction, Nature, vol.461, issue.7266, pp.960-963, 2009.

L. G. Herrmann, F. Portier, P. Roche, T. Yeyati, C. Kontos et al., Carbon Nanotubes as Cooper-Pair Beam Splitters, Physical Review Letters, vol.104, issue.2, p.26801, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00485368

Z. B. Tan, D. Cox, T. Nieminen, P. Lähteenmäki, D. Golubev et al., Cooper Pair Splitting by Means of Graphene Quantum Dots, Physical Review Letters, vol.114, issue.9, p.96602, 2015.

J. J. Viennot, M. C. Dartiailh, A. Cottet, and T. Kontos, Coherent coupling of a single spin to microwave cavity photons, Science, vol.349, issue.6246, pp.408-411, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01310665

F. Kuemmeth, S. Ilani, D. C. Ralph, and P. L. Mceuen, Coupling of spin and orbital motion of electrons in carbon nanotubes, Nature, vol.452, issue.7186, pp.448-452, 2008.

C. R. Dean, A. F. Young, I. Meric, C. Lee, L. Wang et al., Boron nitride substrates for high-quality graphene electronics, Nature Nanotechnology, vol.5, issue.10, pp.722-726, 2010.

E. D. Minot, Y. Yaish, V. Sazonova, J. Park, M. Brink et al., Tuning Carbon Nanotube Band Gaps with Strain, Physical Review Letters, vol.90, issue.15, p.156401, 2003.

K. Thomas-sand-jespersen, J. Grove-rasmussen, K. Paaske, T. Muraki, J. Fujisawa et al., Gate-dependent spinorbit coupling in multielectron carbon nanotubes, Nature Physics, vol.7, issue.4, pp.348-353, 2011.

G. A. Steele, F. Pei, E. A. Laird, J. M. Jol, H. B. Meerwaldt et al., Large spin-orbit coupling in carbon nanotubes, Nature Communications, vol.4, issue.1, p.1573, 2013.

A. Javey, J. Guo, Q. Wang, M. Lundstrom, and H. Dai, Ballistic carbon nanotube field-effect transistors, Nature, vol.424, issue.6949, pp.654-657, 2003.

J. Gorman, D. G. Hasko, and D. A. Williams, Charge-Qubit Operation of an Isolated Double Quantum Dot, Physical Review Letters, vol.95, issue.9, p.90502, 2005.

. J-r-petta, Coherent Manipulation of Coupled Electron Spins in Semiconductor Quantum Dots, Science, vol.309, issue.5744, pp.2180-2184, 2005.

M. Pioro-ladrière, T. Obata, Y. Tokura, Y. Shin, T. Kubo et al., Electrically driven single-electron spin resonance in a slanting Zeeman field, Nature Physics, vol.4, issue.10, pp.776-779, 2008.

W. G. Van-der-wiel, S. De-franceschi, J. M. Elzerman, T. Fujisawa, S. Tarucha et al., Electron transport through double quantum dots. Reviews of Modern Physics, vol.75, pp.1-22, 2002.

R. Hanson, L. P. Kouwenhoven, J. R. Petta, S. Tarucha, and L. Vandersypen, Spins in few-electron quantum dots, Reviews of Modern Physics, vol.79, issue.4, pp.1217-1265, 2007.

S. Sapmaz, C. Meyer, P. Beliczynski, P. Jarillo-herrero, and L. P. ,

. Kouwenhoven, Excited State Spectroscopy in Carbon Nanotube Double Quantum Dots, Nano Letters, vol.6, issue.7, pp.1350-1355, 2006.

F. Molitor, H. Knowles, S. Dröscher, U. Gasser, T. Choi et al., Observation of excited states in a graphene double quantum dot, Europhysics Letters), vol.89, issue.6, p.67005, 2010.

D. Xing-lan-liu, . Hug, M. K. Lieven, and . Vandersypen, Gate-defined graphene double quantum dot and excited state spectroscopy, Nano Letters, vol.10, issue.5, pp.1623-1627, 2010.

F. Pei, E. A. Laird, G. A. Steele, and L. P. Kouwenhoven, Valleyspin blockade and spin resonance in carbon nanotubes, Nature Nanotechnology, vol.7, issue.10, pp.630-634, 2012.

D. Loss and D. P. Divincenzo, Quantum computation with quantum dots, Physical Review A, vol.57, issue.1, pp.120-126, 1998.

L. Vandersypen and I. L. Chuang, NMR techniques for quantum control and computation, Reviews of Modern Physics, vol.76, issue.4, pp.1037-1069, 2005.

T. Frey, P. J. Leek, M. Beck, A. Blais, T. Ihn et al., Dipole Coupling of a Double Quantum Dot to a Microwave Resonator, Physical Review Letters, vol.108, issue.4, p.46807, 2012.

M. R. Delbecq, V. Schmitt, F. D. Parmentier, N. Roch, J. J. Viennot et al., Coupling a Quantum Dot, Fermionic Leads, and a Microwave Cavity on a Chip, Physical Review Letters, vol.107, issue.25, p.256804, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00657375

Z. Shi, C. B. Simmons, D. R. Ward, J. R. Prance, R. T. Mohr et al., Coherent quantum oscillations and echo measurements of a Si charge qubit, Physical Review B, vol.88, issue.7, p.75416, 2013.

T. Hayashi, T. Fujisawa, H. D. Cheong, Y. H. Jeong, and Y. Hirayama, Coherent Manipulation of Electronic States in a Double Quantum Dot, Physical Review Letters, vol.91, issue.22, p.226804, 2003.

G. Cao, H. Li, T. Tu, L. Wang, C. Zhou et al., Ultrafast universal quantum control of a quantum-dot charge qubit using LandauZenerStückelberg interference, Nature Communications, vol.4, issue.1, p.1401, 2013.

K. D. Petersson, J. R. Petta, H. Lu, and A. C. Gossard, Quantum Coherence in a One-Electron Semiconductor Charge Qubit, Physical Review Letters, vol.105, issue.24, p.246804, 2010.

J. J. Viennot, M. R. Delbecq, M. C. Dartiailh, A. Cottet, and T. Kontos, Out-of-equilibrium charge dynamics in a hybrid circuit quantum electrodynamics architecture, Physical Review B, vol.89, issue.16, p.165404, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01310664

D. J. Scarlino, . Van-woerkom, J. Stockklauser, M. Koski, S. Collodo et al., All-Microwave Control and Dispersive Readout of Gate-Defined Quantum Dot Qubits in Circuit Quantum Electrodynamics. arXiv, vol.1, 2017.

N. Bar-gill, L. M. Pham, A. Jarmola, D. Budker, and R. L. Walsworth, Solid-state electronic spin coherence time approaching one second, Nature Communications, vol.4, pp.1743-1746, 2013.

N. Samkharadze, . Zheng, . Kalhor, . Brousse, U. Sammak et al., Strong spin-photon coupling in silicon, Bibliography Science, vol.359, issue.6380, pp.1123-1127, 2018.

J. V. Landig, P. Koski, U. C. Scarlino, A. Mendes, C. Blais et al., Coherent spinphoton coupling using a resonant exchange qubit, Nature, vol.560, issue.7717, pp.179-184, 2018.

X. Mi, M. Benito, S. Putz, D. M. Zajac, J. M. Taylor et al., A coherent spinphoton interface in silicon, Nature, vol.555, issue.7698, pp.599-603, 2018.

S. R. Foltyn, L. Civale, J. L. Macmanus-driscoll, Q. X. Jia, B. Maiorov et al., Materials science challenges for high-temperature superconducting wire, Nature Materials, vol.6, issue.9, pp.631-642, 2007.

H. Fröhlich, Theory of the Superconducting State. I. The Ground State at the Absolute Zero of Temperature, Physical Review, vol.79, issue.5, pp.845-856, 1950.

J. Bardeen and D. Pines, Electron-Phonon Interaction in Metals, Physical Review, vol.99, issue.4, pp.1140-1150, 1955.

L. N. Cooper, Bound Electron Pairs in a Degenerate Fermi Gas, Physical Review, vol.104, issue.4, pp.1189-1190, 1956.

J. Bardeen, L. N. Cooper, and J. R. Schrieffer, Theory of Superconductivity. Physical Review, vol.108, issue.5, pp.1175-1204, 1957.

M. Tinkham, Introduction to Superconductivity, vol.38, 2004.

F. James, . Annett, and . Superconductivity, Superfluids and Condensates. Number May. Oxford, 2004.

Y. Kitaev, Unpaired Majorana fermions in quantum wires, Physics-Uspekhi, vol.44, issue.10S, pp.131-136, 2001.

J. Pillet, C. H. Quay, P. Morfin, C. Bena, . Levy et al., Andreev bound states in supercurrent-carrying carbon nanotubes revealed, Nature Physics, vol.6, issue.12, pp.965-969, 2010.
URL : https://hal.archives-ouvertes.fr/hal-02430224

P. Recher, E. V. Sukhorukov, and D. Loss, Andreev tunneling, Coulomb blockade, and resonant transport of nonlocal spin-entangled electrons, Physical Review B, vol.63, issue.16, p.11, 2001.

D. F. Walls and G. J. Milburn, Quantum Optics, 2008.

L. Hofstetter, S. Csonka, A. Baumgartner, G. Fülöp, S. Hollosy et al., Finite-Bias Cooper Pair Splitting, Physical Review Letters, vol.107, issue.13, p.136801, 2011.

A. Das, Y. Ronen, M. Heiblum, D. Mahalu, A. V. Kretinin et al., High-efficiency Cooper pair splitting demonstrated by twoparticle conductance resonance and positive noise cross-correlation, Nature Communications, vol.3, p.1165, 2012.

J. Schindele, A. Baumgartner, and C. Schönenberger, Near-Unity Cooper Pair Splitting Efficiency, Physical Review Letters, vol.109, issue.15, p.157002, 2012.

I. V. Borzenets, Y. Shimazaki, G. F. Jones, M. F. Craciun, S. Russo et al., High Efficiency CVD Graphene-lead (Pb) Cooper Pair Splitter, Scientific Reports, vol.6, pp.1-8, 2016.

. R-s-deacon, . Oiwa, . Sailer, Y. Baba, . Kanai et al., Cooper pair splitting in parallel quantum dot Josephson junctions, Nature communications, vol.6, p.7446, 2015.

A. Cottet, Probing coherent Cooper pair splitting with cavity photons, Physical Review B, vol.90, issue.12, p.125139, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01045041

A. Cottet, T. Kontos, and A. L. Yeyati, Subradiant Split Cooper Pairs, Physical Review Letters, vol.108, issue.16, p.166803, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00646950

P. Recher, E. V. Sukhorukov, and D. Loss, Andreev tunneling, Coulomb blockade, and resonant transport of nonlocal spin-entangled electrons, Physical Review B, vol.63, issue.16, p.165314, 2001.

A. L. Falk, B. B. Buckley, G. Calusine, W. F. Koehl, and V. Viatcheslav,

A. Dobrovitski, C. A. Politi, . Zorman, X. Philip, and D. D. Feng,

. Awschalom, Polytype control of spin qubits in silicon carbide, Nature Communications, vol.4, pp.1-7, 2013.

J. Jarryd, . Pla, Y. Kuan, J. P. Tan, . Dehollain et al., A single-atom electron spin qubit in silicon, Nature, vol.489, issue.7417, pp.541-544, 2012.

L. Childress, M. Gurudev?dutt, J. Taylor, F. Zibrov, . Jelezko et al., Coherent Dynamics of Coupled Electron and Nuclear Spin Qubits in Diamond, Science, vol.314, issue.5797, p.281, 2006.

R. Maurand, X. Jehl, D. Kotekar-patil, A. Corna, H. Bohuslavskyi et al., A CMOS silicon spin qubit, Nature Communications, vol.7, p.13575, 2016.
URL : https://hal.archives-ouvertes.fr/hal-02005935

S. Amasha, K. Maclean, P. Iuliana, D. M. Radu, M. A. Zumbühl et al.,

A. C. Hanson and . Gossard, Electrical Control of Spin Relaxation in a Quantum Dot, Physical Review Letters, vol.100, issue.4, p.46803, 2008.

F. K. Malinowski, F. Martins, P. D. Nissen, E. Barnes, L. Cywi?ski et al., Notch filtering the nuclear environment of a spin qubit, Nature Nanotechnology, vol.12, issue.1, pp.16-20, 2016.

Y. Kubo, F. R. Ong, P. Bertet, D. Vion, V. Jacques et al., Strong Coupling of a Spin Ensemble to a Superconducting Resonator, Physical Review Letters, vol.105, issue.14, p.140502, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00710240

S. Nadj-perge, S. Frolov, E. Bakkers, and L. Kouwenhoven, Spinorbit qubit in a semiconductor nanowire, Nature, vol.468, issue.7327, pp.1084-1087, 2010.

A. Cottet and T. Kontos, Spin Quantum Bit with Ferromagnetic Contacts for Circuit QED, Physical Review Letters, vol.105, issue.16, p.160502, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00521600

M. Russ and G. Burkard, Three-electron spin qubits, Journal of Physics Condensed Matter, vol.29, issue.39, p.761, 2017.

X. Wu, D. R. Ward, J. R. Prance, D. Kim, J. K. Gamble et al., Two-axis control of a singlet-triplet qubit with an integrated micromagnet, Proceedings of the National Academy of Sciences, vol.111, pp.11938-11942, 2014.

B. Bertrand, H. Flentje, S. Takada, M. Yamamoto, S. Tarucha et al., Quantum Manipulation of Two-Electron Spin States in Isolated Double Quantum Dots, Physical Review Letters, vol.115, issue.9, p.96801, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01221386

M. D. Reed, B. M. Maune, R. W. Andrews, M. G. Borselli, K. Eng et al.,

R. S. Rakher, A. E. Ross, A. Schmitz, J. A. Smith, M. F. Wright et al.,

. Hunter, Reduced Sensitivity to Charge Noise in Semiconductor Spin Qubits via Symmetric Operation, Physical Review Letters, vol.116, issue.11, p.110402, 2016.

F. Martins, F. K. Malinowski, P. D. Nissen, E. Barnes, S. Fallahi et al., Noise Suppression Using Symmetric Exchange Gates in Spin Qubits, Physical Review Letters, vol.116, issue.11, p.116801, 2016.

L. K-d-petersson, M. Mcfaul, M. Schroer, J. Jung, . Taylor et al., Circuit quantum electrodynamics with a spin qubit, Nature, vol.490, issue.7420, pp.380-383, 2012.

J. Medford, J. Beil, J. M. Taylor, E. I. Rashba, H. Lu et al.,

. Marcus, Quantum-Dot-Based Resonant Exchange Qubit, Physical Review Letters, vol.111, issue.5, p.50501, 2013.

E. Kawakami, P. Scarlino, D. R. Ward, F. R. Braakman, D. E. Savage et al., Electrical control of a long-lived spin qubit in a Si/SiGe quantum dot, Nature Nanotechnology, vol.9, issue.9, pp.666-670, 2014.

. E-a-laird, L. Pei, and . Kouwenhoven, A valleyspin qubit in a carbon nanotube, Nature Nanotechnology, vol.8, issue.8, pp.565-568, 2013.

J. H. Prechtel, A. V. Kuhlmann, J. Houel, A. Ludwig, S. R. Valentin et al., Decoupling a hole spin qubit from the nuclear spins, Nature Materials, vol.15, issue.9, pp.981-986, 2016.
URL : https://hal.archives-ouvertes.fr/hal-02290221

A. Cottet, T. Kontos, W. Belzig, C. Schönenberger, and C. Bruder, Controlling spin in an electronic interferometer with spin-active interfaces, Europhysics Letters (EPL), vol.74, issue.2, pp.320-326, 2006.

D. Leibfried, C. Blatt, D. Monroe, and . Wineland, Quantum dynamics of single trapped ions, Reviews of Modern Physics, vol.75, issue.1, pp.281-324, 2003.

A. Blais, R. Huang, A. Wallraff, S. M. Girvin, and R. J. Schoelkopf, Cavity quantum electrodynamics for superconducting electrical circuits: An architecture for quantum computation, Physical Review A, vol.69, issue.6, p.62320, 2004.

I. Chiorescu, P. Bertet, K. Semba, Y. Nakamura, C. J. Harmans et al.,

. Mooij, Coherent dynamics of a flux qubit coupled to a harmonic oscillator, Nature, vol.431, issue.7005, pp.159-162, 2004.

J. Majer, J. M. Chow, J. M. Gambetta, J. Koch, B. R. Johnson et al.,

R. J. Girvin and . Schoelkopf, Coupling superconducting qubits via a cavity bus

, Nature, vol.449, issue.7161, pp.443-447, 2007.

M. A. Sillanpää, J. I. Park, and R. W. Simmonds, Coherent quantum state storage and transfer between two phase qubits via a resonant cavity, Nature, vol.449, issue.7161, pp.438-442, 2007.

A. Fedorov, . Steffen, M. P. Baur, A. Da-silva, and . Wallraff, Implementation of a Toffoli gate with superconducting circuits, Nature, vol.481, issue.7380, pp.170-172, 2012.

M. M. Desjardins, J. J. Viennot, M. C. Dartiailh, L. E. Bruhat, M. R. Delbecq et al., Observation of the frozen charge of a Kondo resonance, Nature, vol.545, issue.7652, pp.71-74, 2017.

T. Cottet, B. Kontos, and . Douçot, Electron-photon coupling in mesoscopic quantum electrodynamics, Physical Review B, vol.91, issue.20, pp.1-16, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01152125

A. A. Clerk, M. H. Devoret, S. M. Girvin, F. Marquardt, and R. J. Schoelkopf, Introduction to quantum noise, measurement, and amplification, Reviews of Modern Physics, vol.82, issue.2, pp.1155-1208, 2010.

G. Deng, D. Wei, J. R. Johansson, M. Zhang, S. Li et al., Charge Number Dependence of the Dephasing Rates of a Graphene Double Quantum Dot in a Circuit QED Architecture, Physical Review Letters, vol.115, issue.12, p.126804, 2015.

V. F. Stockklauser, . Maisi, . Basset, C. Cujia, . Reichl et al., Microwave Emission from Hybridized States in a Semiconductor Charge Qubit, Physical Review Letters, vol.115, issue.4, p.46802, 2015.

A. Wallraff, D. I. Schuster, A. Blais, L. Frunzio, J. Majer et al., Approaching Unit Visibility for Control of a Superconducting Qubit with Dispersive Readout, Physical Review Letters, vol.95, issue.6, p.60501, 2005.

N. Didier, J. Bourassa, and A. Blais, Fast Quantum Nondemolition Readout by Parametric Modulation of Longitudinal Qubit-Oscillator Interaction, Physical Review Letters, vol.115, issue.20, p.203601, 2015.

M. Brune, F. Schmidt-kaler, A. Maali, J. Dreyer, E. Hagley et al., Quantum Rabi Oscillation: A Direct Test of Field Quantization in a Cavity, Physical Review Letters, vol.76, issue.11, pp.1800-1803, 1996.
URL : https://hal.archives-ouvertes.fr/hal-01696885

L. S. Bishop, J. M. Chow, J. Koch, A. A. Houck, M. H. Devoret et al., Nonlinear response of the vacuum Rabi resonance, Nature Physics, vol.5, issue.2, pp.105-109, 2009.

D. I. Schuster, A. A. Houck, J. A. Schreier, A. Wallraff, J. M. Gambetta et al.,

. Schoelkopf, Resolving photon number states in a superconducting circuit, Nature, vol.445, issue.7127, pp.515-518, 2007.

M. Brune, P. Nussenzveig, F. Schmidt-kaler, F. Bernardot, A. Maali et al., From Lamb shift to light shifts: Vacuum and subphoton cavity fields measured by atomic phase sensitive detection, Physical Review Letters, vol.72, issue.21, pp.3339-3342, 1994.
URL : https://hal.archives-ouvertes.fr/hal-01696888

K. Blum, Density Matrix Theory and Applications, 2012.

A. Cottet, C. Matthieu, M. M. Dartiailh, T. Desjardins, . Cubaynes et al., Cavity QED with hybrid nanocircuits: from atomic-like physics to condensed matter phenomena, Journal of Physics: Condensed Matter, vol.29, issue.43, p.433002, 2017.

K. Geerlings, S. Shankar, E. Edwards, L. Frunzio, R. J. Schoelkopf et al., Improving the quality factor of microwave compact resonators by optimizing their geometrical parameters, Applied Physics Letters, vol.100, issue.19, p.192601, 2012.

N. Samkharadze, A. Bruno, P. Scarlino, G. Zheng, D. P. Divincenzo et al., High Kinetic Inductance Superconducting Nanowire Bibliography Resonators for Circuit QED in a Magnetic Field. arXiv, vol.1, pp.1-10, 2015.

J. Gao, M. Daal, A. Vayonakis, S. Kumar, J. Zmuidzinas et al.,

. Leduc, Experimental evidence for a surface distribution of two-level systems in superconducting lithographed microwave resonators, Applied Physics Letters, vol.92, issue.15, p.152505, 2008.

A. V. Khaetskii, D. Loss, and L. Glazman, Electron Spin Decoherence in Quantum Dots due to Interaction with Nuclei, Physical Review Letters, vol.88, issue.18, p.186802, 2002.

R. Barends, N. Vercruyssen, A. Endo, P. J. Visser, T. Zijlstra et al., Minimal resonator loss for circuit quantum electrodynamics, Applied Physics Letters, vol.97, issue.2, p.23508, 2010.

J. Koch, T. M. Yu, J. Gambetta, A. A. Houck, D. I. Schuster et al., Chargeinsensitive qubit design derived from the Cooper pair box, Physical Review A, vol.76, issue.4, p.42319, 2007.

M. Bockrath, Single-Electron Transport in Ropes of, Carbon Nanotubes. Science, vol.275, issue.5308, pp.1922-1925, 1922.

J. J. Viennot, J. Palomo, and T. Kontos, Stamping single wall nanotubes for circuit quantum electrodynamics, Applied Physics Letters, vol.104, issue.11, p.113108, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01310663

S. Blien, K. J. Götz, P. L. Stiller, T. Mayer, T. Huber et al.,

. Hüttel, Towards carbon nanotube growth into superconducting microwave resonator geometries. physica status solidi (b), vol.253, pp.2385-2390, 2016.

C. Wu, C. H. Liu, and Z. Zhong, One-Step Direct Transfer of Pristine Single-Walled Carbon Nanotubes for Functional Nanoelectronics, Nano Letters, vol.10, issue.3, pp.1032-1036, 2010.

J. Waissman, M. Honig, S. Pecker, A. Benyamini, A. Hamo et al., Realization of pristine and locally tunable one-dimensional electron systems in carbon nanotubes, Nature Nanotechnology, vol.8, issue.8, pp.569-574, 2013.

J. Gramich, A. Baumgartner, M. Muoth, C. Hierold, and C. Schönenberger, Fork stamping of pristine carbon nanotubes onto ferromagnetic contacts for spin-valve devices. physica status solidi (b), vol.252, pp.2496-2502, 2015.

S. Blien, P. Steger, A. Albang, N. Paradiso, and A. K. Hüttel, Quartz tuning-fork based carbon nanotube transfer into quantum device geometries, vol.1, pp.1-5, 2018.

G. A. Steele, A. K. Huttel, B. Witkamp, M. Poot, H. B. Meerwaldt et al., Strong Coupling Between Single-Electron Tunneling and Nanomechanical Motion, Science, vol.325, issue.5944, pp.1103-1107, 2009.

T. Sharf, J. W. Kevek, T. Deborde, J. L. Wardini, and E. D. ,

. Minot, Origins of Charge Noise in Carbon Nanotube Field-Effect Transistor Biosensors, Nano Letters, vol.12, issue.12, pp.6380-6384, 2012.

M. Goppl, A. Fragner, M. Baur, R. Bianchetti, S. Filipp et al., Coplanar waveguide resonators for circuit quantum electrodynamics, Journal of Applied Physics, vol.104, issue.11, p.113904, 2008.

J. Furer, Growth of Single-Wall Carbon Nanotubes by Chemical Vapor Deposition for Electrical Devices, 2006.

H. Zhong-jin, J. Chu, J. Wang, W. Hong, Y. Tan et al., Ultralow Feeding Gas Flow Guiding Growth of Large-Scale Horizontally Aligned Single-Walled Carbon Nanotube Arrays, Nano Letters, vol.7, issue.7, pp.2073-2079, 2007.

S. Huang, M. Woodson, R. Smalley, and J. Liu, Growth Mechanism of Oriented Long Single Walled Carbon Nanotubes Using Fast-Heating Chemical Vapor Deposition Process, Nano Letters, vol.4, issue.6, pp.1025-1028, 2004.

Y. Wang and J. Yeow, A Review of Carbon Nanotubes-Based Gas Sensors, Journal of Sensors, pp.1-24, 2009.

P. G. Collins, Engineering Carbon Nanotubes and Nanotube Circuits Using Electrical Breakdown, Science, vol.292, issue.5517, pp.706-709, 2001.

P. G. Collins, M. Hersam, M. Arnold, R. Martel, and P. Avouris, Current Saturation and Electrical Breakdown in Multiwalled Carbon Nanotubes, Physical Review Letters, vol.86, issue.14, pp.3128-3131, 2001.

M. Ioan, K. Pop, G. Geerlings, . Catelani, J. Robert et al., Coherent suppression of electromagnetic dissipation due to superconducting quasiparticles, Nature, vol.508, issue.7496, pp.369-372, 2014.

B. Laure, Microwave as a probe of quantum dot circuits: From Kondo dynamics to mesoscopic quantum electrodynamics. Thesis, 2016.

J. Viennot, Charge and spin dynamics in a hybrid circuit quantum electrodynamics architecture. Thesis, 2014.
URL : https://hal.archives-ouvertes.fr/tel-01062841

D. I. Schuster, A. Wallraff, A. Blais, L. Frunzio, R. S. Huang et al., Ac Stark shift and dephasing of a superconducting qubit strongly coupled to a cavity field, Physical Review Letters, vol.94, issue.12, p.123602, 2005.

R. Bianchetti, S. Filipp, M. Baur, J. M. Fink, M. Göppl et al., Dynamics of dispersive single-qubit readout in circuit quantum electrodynamics, Physical Review A, vol.80, issue.4, p.43840, 2009.

K. W. Murch, U. Vool, D. Zhou, S. J. Weber, S. M. Girvin et al., Cavity-Assisted Quantum Bath Engineering, Physical Review Letters, vol.109, issue.18, p.183602, 2012.

J. Basset, D. Jarausch, A. Stockklauser, T. Frey, C. Reichl et al., Single-electron double quantum dot dipolecoupled to a single photonic mode, Physical Review B, vol.88, issue.12, p.125312, 2013.

A. Stockklauser, P. Scarlino, J. V. Koski, S. Gasparinetti, C. K. Andersen et al., Strong Coupling Cavity QED with Gate-Defined Double Quantum Dots, p.193

, Impedance Resonator. Physical Review X, vol.7, issue.1, p.11030, 2017.

,

S. M. Albrecht, A. P. Higginbotham, M. Madsen, F. Kuemmeth, T. S. Jespersen et al., Exponential protection of zero modes in Majorana islands, Nature, vol.531, issue.7593, pp.206-209, 2016.

C. Janvier, . Tosi, . Bretheau, . Girit, . Stern et al., Coherent manipulation of Andreev states in superconducting atomic contacts, Science, vol.349, issue.6253, pp.1199-202, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01197334

L. E. Bruhat, J. J. Viennot, M. C. Dartiailh, M. M. Desjardins, T. Kontos et al., Cavity Photons as a Probe for Charge Relaxation Resistance and Photon Emission in a Quantum Dot Coupled to Normal and Superconducting Continua, Physical Review X, vol.6, issue.2, p.21014, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01331173

O. Sauret, D. Feinberg, and T. Martin, Quantum master equations for the superconductorquantum dot entangler, Physical Review B, vol.70, issue.24, p.245313, 2004.

O. Sauret, T. Martin, and D. Feinberg, Spin-current noise and Bell inequalities in a realistic superconductor-quantum dot entangler, Physical Review B, vol.72, issue.2, p.24544, 2005.

D. Chevallier, J. Rech, T. Jonckheere, and T. Martin, Current and noise correlations in a double-dot Cooper-pair beam splitter, Physical Review B, vol.83, issue.12, p.125421, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00536368

L. Hofstetter, S. Csonka, A. Baumgartner, G. Fülöp, S. Hollosy et al., Finite-Bias Cooper Pair Splitting, Physical Review Letters, vol.107, issue.13, p.136801, 2011.

A. J. Landig, J. V. Koski, P. Scarlino, U. C. Mendes, A. Blais et al., Coherent spinphoton coupling using a resonant exchange qubit, Nature, vol.560, issue.7717, pp.179-184, 2018.

J. Eldridge, G. Marco, M. Pala, J. Governale, and . König, Superconducting proximity effect in interacting double-dot systems, Physical Review B, vol.82, issue.18, p.184507, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00596333

E. Simon, . Nigg, P. Rakesh, S. Tiwari, T. Walter et al., Detecting nonlocal Cooper pair entanglement by optical Bell inequality violation, Physical Review B, vol.91, issue.9, p.94516, 2015.

M. Friesen, J. Ghosh, M. A. Eriksson, and S. N. Coppersmith, A decoherence-free subspace in a charge quadrupole qubit, Nature Communications, vol.8, pp.1-7, 2017.

V. Srinivasa, M. Jacob, C. Taylor, and . Tahan, Entangling distant resonant exchange qubits via circuit quantum electrodynamics, pp.55-61, 2016.

M. Russ and G. Burkard, Long distance coupling of resonant exchange qubits, Physical Review B, vol.92, issue.20, p.205412, 2015.

J. Stehlik, Y. Liu, C. Eichler, T. R. Hartke, X. Mi et al., Double Quantum Dot Floquet Gain Medium, vol.6, p.41027, 2016.

Y. Liu, C. Stehlik, M. Eichler, J. Gullans, J. Taylor et al., Semiconductor double quantum dot micromaser, Science, vol.347, issue.6219, pp.285-287, 2015.

Y. Liu, J. Stehlik, M. J. Gullans, J. M. Taylor, and J. R. Petta, Injection locking of a semiconductor double-quantum-dot micromaser, Physical Review A, vol.92, issue.5, p.53802, 2015.

A. Cottet, D. Vion, A. Aassime, P. Joyez, D. Esteve et al., Implementation of a combined charge-phase quantum bit in a superconducting circuit, Physica C: Superconductivity, vol.367, issue.1-4, pp.197-203, 2002.

M. Russ, F. Ginzel, and G. Burkard, Coupling of three-spin qubits to their electric environment, Physical Review B, vol.94, issue.16, p.165411, 2016.

A. Cottet, T. Kontos, and B. Douçot, Squeezing light with Majorana fermions, Physical Review B, vol.88, issue.19, p.195415, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00847856

M. C. Dartiailh, T. Kontos, B. Douçot, and A. Cottet, Direct Cavity Detection of Majorana Pairs, Physical Review Letters, vol.118, issue.12, p.126803, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01554636

G. Burkard and A. Imamoglu, Ultra-long-distance interaction between spin qubits, Physical Review B, vol.74, issue.4, p.41307, 2006.

M. Trif, N. Vitaly, D. Golovach, and . Loss, Spin dynamics in InAs nanowire quantum dots coupled to a transmission line, Physical Review B, vol.77, issue.4, p.45434, 2008.

X. Hu, Y. Liu, and F. Nori, Strong coupling of a spin qubit to a superconducting stripline cavity, Physical Review B, vol.86, issue.3, p.35314, 2012.

S. P. Harvey, C. G. Bøttcher, L. A. Orona, S. D. Bartlett, A. C. Doherty et al., Coupling two spin qubits with a high-impedance resonator, Physical Review B, vol.97, issue.23, p.235409, 2018.

T. Pei, A. Pályi, M. Mergenthaler, N. Ares, A. Mavalankar et al.,

E. A. Briggs and . Laird, Hyperfine and Spin-Orbit Coupling Effects on Decay of Spin-Valley States in a Carbon Nanotube, Physical Review Letters, vol.118, issue.17, p.177701, 2017.

M. Benito, X. Mi, J. M. Taylor, J. R. Petta, and G. Burkard, Input-output theory for spin-photon coupling in Si double quantum dots, Physical Review B, vol.96, issue.23, p.235434, 2017.

C. Wu, C. H. Liu, and Z. Zhong, One-Step Direct Transfer of Pristine Single-Walled Carbon Nanotubes for Functional Nanoelectronics, Nano Letters, vol.10, issue.3, pp.1032-1036, 2010.

J. Waissman, M. Honig, S. Pecker, A. Benyamini, A. Hamo et al., Realization of pristine and locally tunable one-dimensional electron systems in carbon nanotubes, Nature Nanotechnology, vol.8, issue.8, pp.569-574, 2013.

. V-ranjan, . Puebla-hellmann, . Jung, . Hasler, M. Nunnenkamp et al., Clean carbon nanotubes coupled to superconducting impedance-matching circuits, Nature Communications, vol.6, issue.1, p.7165, 2015.

E. A. Laird, F. Kuemmeth, G. A. Steele, K. Grove-rasmussen, J. Nygård et al., Quantum transport in carbon nanotubes, Reviews of Modern Physics, vol.87, issue.3, pp.703-764, 2015.

J. Chauleau, B. J. Mcmorran, R. Belkhou, N. Bergeard, T. O. Mente et al., Magnetization textures in NiPd nanostructures, Physical Review B, vol.84, issue.9, p.94416, 2011.

A. Cottet, Microwave spectroscopy of a Cooper pair beam splitter, Physical Review B, vol.86, issue.7, p.75107, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00744675

K. Wrze?niewski, P. Trocha, and I. Weymann, Current cross-correlations in double quantum dot based Cooper pair splitters with ferromagnetic leads, Journal of Physics: Condensed Matter, vol.29, issue.19, p.195302, 2017.

M. Leijnse and K. Flensberg, Coupling Spin Qubits via Superconductors, Physical Review Letters, vol.111, issue.6, p.60501, 2013.