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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Semiclassical theory of lasing in photonic crystals
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Semiclassical theory of lasing in photonic crystals

机译:光子晶体中激光发射的半经典理论

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We present a theoretical analysis of laser action within the bands of propagating modes of a photonic crystal. Using Bloch functions as carrier waves in conjunction with a multiscale analysis, we derive the generalized Maxwell-Bloch equations for an incoherently pumped atomic system in interaction with the electromagnetic reservoir of a photonic crystal. These general Maxwell-Bloch equations are similar to the conventional semi-classical laser equations but contain effective parameters that depend on the band structure of the linear photonic crystal. Through an investigation of steady-state laser behavior, we show that, near a photonic band edge, the rate of stimulated emission may be enhanced and the internal losses are reduced, which leads to an important lowering of the laser threshold. In addition, we find an increase of the laser output along with an additional narrowing of the linewidth at a photonic band edge. (C) 2002 Optical Society of America. [References: 29]
机译:我们提出了光子晶体的传播模式带内的激光作用的理论分析。使用Bloch函数作为载波并进行多尺度分析,我们得出了与光子晶体的电磁储层相互作用的非相干泵浦原子系统的广义Maxwell-Bloch方程。这些一般的Maxwell-Bloch方程类似于常规的半经典激光方程,但包含的有效参数取决于线性光子晶体的能带结构。通过对稳态激光行为的研究,我们发现,在光子带边缘附近,受激发射的速率可能会提高,内部损耗会减少,从而导致激光阈值的重要降低。另外,我们发现激光输出增加,并且在光子带边缘的线宽进一步变窄。 (C)2002年美国眼镜学会。 [参考:29]

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