Two-wave mixing in photorefractive BaTiO_3:Rh at 106 µm in the nanosecond regime
Author:
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics
Reference7 articles.
1. Characterization of a photorefractive rhodium doped barium titanate at 1.06 μm
2. Spectroscopic and photorefractive properties of infrared-sensitive rhodium-doped barium titanate
3. Three-valence charge-transport model for explanation of the photorefractive effect
4. Short-pulse grating formation in photorefractive materials
5. Intensity-dependent hole–electron competition and photocarrier saturation in BaTiO_3 when using intense laser pulses
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1. Slowdown of nanosecond light pulses with photorefractive two-wave mixing;Physical Review A;2022-02-03
2. Determination of elastic, piezoelectric, and dielectric constants of an R:BaTiO 3 single crystal by Brillouin scattering;Chinese Physics B;2012-06
3. Two-Wave Mixing Amplification of Femtosecond Laser Pulses at 800 nm in Rh:BaTiO$_{3}$ Photorefractive Crystal;Japanese Journal of Applied Physics;2011-10-20
4. Two-Wave Mixing Amplification of Femtosecond Laser Pulses at 800 nm in Rh:BaTiO3Photorefractive Crystal;Japanese Journal of Applied Physics;2011-10-01
5. COUPLED BEAM PROPAGATION THROUGH PHOTOREFRACTIVE MEDIA;Journal of Nonlinear Optical Physics & Materials;2011-03
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