首页> 外文会议>Photonic Fiber and Crystal Devices: Advnaces in Materals and Innovations in Device Applications; Proceedings of SPIE-The International Society for Optical Engineering; vol.6698 >Nanosecond Electrical and Optical Pulses and Self Phase Conjugation from Photorefractive Lithium Niobate Fibers and Crystals
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Nanosecond Electrical and Optical Pulses and Self Phase Conjugation from Photorefractive Lithium Niobate Fibers and Crystals

机译:光折变铌酸锂纤维和晶体的纳秒级电光脉冲和自相位共轭。

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摘要

We have observed nanosecond electrical and optical pulsations from photorefractive lithium-niobate optical fibers using CW green and blue low-power lasers. Fourier spectra of the pulsations have a maximum at ~900 MHz with peaks separated by ~30MHz. We consider free-space and fiber supported illumination of the fiber crystal. Strong nonlinear enhanced backscattering with phase conjugation was observed from bulk crystals and crystal fibers along the C-axis. Model of transformation of CW laser irradiation of ferroelectric crystals into periodic nanosecond electrical and optical pulsations is suggested. This model includes combinations of photorefractive, pyroelectric, piezoelectric, and photogalvanic mechanisms of the holographic grating formation and crystal electrical charging. Possible applications of these short photo-induced electrical pulses for modulation of holographic beam coupling, pulsed electrolysis, electrophoresis, focused electron beams, X-ray and neutron generation, and hand-held micro X-ray devices for localized oncology imaging and treatment based on our advanced sensor work are discussed.
机译:我们已经观察到了使用连续波绿色和蓝色低功率激光器从光折变铌酸锂光纤产生的纳秒级电脉冲和光脉冲。脉动的傅立叶谱在〜900 MHz处最大,峰值相隔〜30MHz。我们考虑了光纤的自由空间和光纤支持照明。从块状晶体和晶体纤维沿C轴观察到强烈的非线性增强的反向散射,具有相共轭。提出了将铁电晶体的连续波激光辐照转换为周期性纳秒电脉冲和光脉冲的模型。该模型包括全息光栅形成和晶体电荷的光折变,热电,压电和光​​电流机制的组合。这些短的光感应电脉冲可能用于调制全息束耦合,脉冲电解,电泳,聚焦电子束,X射线和中子产生,以及用于基于肿瘤的局部肿瘤成像和治疗的手持式微型X射线设备讨论了我们先进的传感器工作。

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