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Non-Markovian delay in the formation of coherence in quantum-dot nanolasers operating in the cavity-QED regime

机译:在腔QED制度中运行的量子点纳米液相色谱法形成连贯性的非马上延迟

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THE quest for miniaturization of integrable optoelectronic devices has led to the development of smaller and smaller nanolasers. Optical microcavities are used to confine the electromagnetic field on the extent of the wavelength itself, culminating in photonic-crystal cavities that combine small mode volumes with long storage time of photons. The small mode volume in particular puts a limit on the amount of gain material that can be brought in spatial overlap with the mode. In order to acquire sufficient gain to sustain lasing operation, spontaneous emission itself is enhanced via the Purcell effect, pushing the concept of lasing into a quantum-cavity-QED regime that is governed by correlation and fluctuation effects.
机译:探索可排现的光电器件的小型化导致了较小纳米溶解器的开发。光学微腔用于将电磁场限制在波长本身的范围内,最终在光子晶体中,这些腔在光子晶体中与光子的长存储时间结合起来。特别是小型模式体积限制了可以通过该模式带来空间重叠的增益材料的限制。为了获得足够的增益来维持激光作业,通过斑块效应增强自发排放本身,推动激光的概念,以通过相关性和波动效应来控制的量子腔QED制度。

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