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OPTICAL LIMITS WITH OPTICAL CONVERGENCE AND ABSORPTION CORPORATE WITH AN INHOMOUS DISTRIBUTION OF TRANSMISSIBLE SATURABLE MATERIAL

机译:透光性可饱和材料的不均匀分布的光学会聚和吸收率的光学极限

摘要

A lens (12) converges a light beam (16) into a light absorbing body (14) having a material which exhibits reverse saturable optical absorption distributed therein with a non-uniform concentration. The concentration is maximum at the focal point (20) of the converged light beam (16), and decreases toward the lens (12) with a distribution selected in correspondence with the optical gain of the converged light beam (16) to limit the local fluence of the light beam (16) propagating through the absorbing body (14), and the output energy of the light beam (16), to predetermined maximum values. The non-uniform concentration further produces a self-protecting effect by causing the region of maximum fluence of the converged light beam (16) to shift toward the lens (12), thereby protecting the region of highest optical gain and highest molecular concentration, as the input energy of the light beam (16) increases.
机译:透镜(12)将光束(16)会聚到光吸收体(14)中,该光吸收体具有以不均匀的浓度分布在其中分布的具有反向饱和光吸收性的材料。聚光在会聚光束(16)的焦点(20)处最大,并且以与会聚光束(16)的光学增益相对应选择的分布朝向透镜(12)减小,以限制局部穿过吸收体(14)的光束(16)的能量密度和光束(16)的输出能量达到预定的最大值。通过使会聚光束(16)的最大通量区域移向透镜(12),该不均匀的浓度进一步产生了自我保护效果,从而保护了最高光学增益和最高分子浓度的区域,如光束(16)的输入能量增加。

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