Abstract : The quantum information processing using diamond color center or the coherent manipulation of rare earth ion embedded in solid state matrices (Pr3+, Eu3+) or the high resolution spectroscopy, require narrow linewidth tunable laser sources.However in the orange-red range (570-635 nm) where laser diodes are lacking and solid-state lasers are poorly developed, only dye lasers are currently available. Nevertheless these sources are complex and difficult to stabilize at the kHz level because of the high frequency noise induced by dye jet.The aim of this thesis is to give an all-solid state alternative of dye lasers. For this purpose, two solutions have been studied:1. The first approach consists on the development of an intracavity frequency doubled singly resonant optical parametric oscillator (OPO) and frequency stabilized at the kHz level.2. The second approach consists on the development of a diode pumped Pr-doped fluoride laser.