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Numerical Simulation of Self-Pumped Phase Conjugate Plane--Curve Loop Mirror Based on Photorefractive Nonlinearity |
Mehran Vahdani Moghaddam1, Zeynab Chenari1, Hamid Latifi1, Vladimir Vladimirovich Shuvalov2, Konestantin Valentinovich Rudenko2 |
1Laser and Plasma research institute, Shahid Beheshti University, Evin, Tehran 19835-63113, Iran2M.V. Lomonosov Moscow State University, Vorobevy gory, 119992, Moscow, Russia |
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Cite this article: |
Mehran Vahdani Moghaddam, Zeynab Chenari, Hamid Latifi et al 2008 Chin. Phys. Lett. 25 2888-2891 |
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Abstract We deal with computer simulation of a transient process in a self-pumped phase conjugate plane--curve loop mirror based on BaTiO3. In optimal circumstances the nonlinear reflectivity and fidelity of such a mirror respectively achieve 0.80--0.90 and 0.95--0.98. The generation of conjugate wave-front occurs due to scattering from the dynamic hologram which is produced in the region of self-intersection of forward and backward beams. In such a model the scenario of passing to unstable generation regimes is similar to the self-pumped phase conjugate plane--plane loop mirror and substantially differs from a single-crystal double phase conjugate mirror.
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Keywords:
42.65.Re
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Received: 25 September 2007
Published: 25 July 2008
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PACS: |
42.65.Re
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(Ultrafast processes; optical pulse generation and pulse compression)
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