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Optical frequency conversions in nonlinear medium with periodically modulated linear and nonlinear optical parameters

机译:具有周期调制线性和非线性光学参数的非线性介质中的光学频率转换

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摘要

A new method considering both linear and nonlinear optical parameter modulation and propagation loss is proposed to treat second-order nonlinear optical interactions in nonlinear media having periodic structures. Mathematical expressions are derived for difference frequency generation (DFG) and compared with those for second-harmonic generation (SHG). Wavelength conversions around 1.55 /spl mu/m, which are very interesting in optical communication systems, are studied for semiconductor DFG devices with periodic structures. Semiconductor (e.g., AlGaAs) DFG devices of standard device lengths (several mm) and pump light intensities (10/sup 5/ kW/cm/sup 2/) are shown capable of practical level conversion efficiencies (/spl sim/10%) and extremely wide bandwidths (/spl ges/100 nm). Effects of propagation loss in DFG devices are also examined.
机译:提出了一种同时考虑线性和非线性光学参数调制和传播损耗的新方法,以处理具有周期性结构的非线性介质中的二阶非线性光学相互作用。推导了差分频率生成(DFG)的数学表达式,并将其与二次谐波生成(SHG)的数学表达式进行了比较。对于具有周期性结构的半导体DFG器件,研究了在光通信系统中非常有趣的约1.55 / spl mu / m的波长转换。显示了具有标准器件长度(几毫米)和泵浦光强度(10 / sup 5 / kW / cm / sup 2 /)的半导体(例如AlGaAs)DFG器件,具有实用的电平转换效率(/ spl sim / 10%)和极宽的带宽(/ spl ges / 100 nm)。还检查了DFG设备中传播损耗的影响。

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