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Application of Orientational Stimulated Scattering in Nematic Liquid Crystals for Beam combining and clean-up

机译:定向激发散射在向列液晶中用于束组合和清除的应用

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Recent experiments demonstrated high conversion efficiency in the process of Orientational Stimulated Scattering (OSS) in nematics. This fact makes OSS attractive for beam combining and clean-up. We consider a scheme for such application and study it by numerically modeling the process. As the process of energy transfer goes, the reverse transfer also begins. However, the region of the back-transfer moves inside the cell with constant velocity in +z direction and given sufficient time, leaves the cell. By modeling the OSS of diffracting one-dimensional beams we show the possibility to obtain a maximum 94% fidelity and 96% power transfer in a numerical experiment with 6 individual overlapping pump beamlets. This means that 90% of the total pump power may be converted into the diffraction-limited output. Remarkably, this output suffers very little cross-phase modulation.
机译:最近的实验表明,向列型取向刺激散射(OSS)过程具有很高的转换效率。这一事实使OSS在光束合并和清理方面具有吸引力。我们考虑了用于此类应用的方案,并通过对过程进行数值建模对其进行研究。随着能量转移的进行,反向转移也开始了。但是,反向传输区域会以恒定速度沿+ z方向在单元内部移动,并经过足够的时间离开单元。通过对衍射一维光束的OSS建模,我们显示了在6个单独的重叠泵浦子束的数值实验中,可以获得最大94%的保真度和96%的功率传递的可能性。这意味着可以将总泵浦功率的90%转换为衍射极限输出。值得注意的是,该输出几乎没有交叉相位调制。

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