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Giant gain enhancement in photonic crystals with a degenerate band edge

机译:带边退化的光子晶体具有巨大的增益增强

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摘要

We propose a new approach leading to giant gain enhancement. It is based on unconventional slow-wave resonance associated with a degenerate band edge (DBE) in the dispersion diagram for a special class of photonic crystals supporting four modes at each frequency. We show that the gain enhancement in a Fabry-Perot cavity (FPC) when operating at the DBE is several orders of magnitude stronger when compared to a cavity of the same length made of a standard photonic crystal with a regular band edge (RBE). The giant gain condition is explained by a significant increase in the photon lifetime and in the local density of states. We have demonstrated the existence of DBE operated special cavities that provide for superior gain conditions for solid-state lasers, quantum cascade lasers, traveling wave tubes, and distributed solid-state amplifiers. We also report the possibility to achieve low-threshold lasing in FPC with DBE compared to RBE-based lasers.
机译:我们提出了一种新的方法,可以大大提高增益。它基于与色散图中简并的频带边缘(DBE)相关的非常规慢波谐振,该慢波谐振是针对在每个频率上支持四种模式的一类特殊的光子晶体。我们表明,与由具有规则带边的标准光子晶体制成的相同长度的腔相比,在DBE上工作时,法布里-珀罗腔(FPC)的增益增强要强几个数量级。巨大的增益条件可以通过光子寿命和状态局部密度的显着增加来解释。我们已经证明了DBE操作的特殊腔体的存在,这些腔体为固态激光器,量子级联激光器,行波管和分布式固态放大器提供了优越的增益条件。我们还报告了与基于RBE的激光器相比,使用DBE在FPC中实现低阈值激光发射的可能性。

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