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通过瞬态相干布居光栅增强的超辐射相变,在半导体异质结构中实现具有超超光速脉冲传播的脉冲产生。

Pulse generation with ultra-superluminal pulse propagation in semiconductor heterostructures by superradiant-phase transition enhanced by transient coherent population gratings.

作者信息

Vasil'ev Peter P, Penty Richard V, White Ian H

机构信息

Centre for Photonic Systems, Department of Engineering, University of Cambridge, Cambridge CB3 0FA, UK.

Quantum Electronics Division, PN Lebedev Physical Institute, Moscow 119991, Russia.

出版信息

Light Sci Appl. 2016 Jun 3;5(6):e16086. doi: 10.1038/lsa.2016.86. eCollection 2016 Jun.

Abstract

This paper reports the observation of ultra-superluminal pulse propagation in multiple-contact semiconductor heterostructures in a superradiant emission regime, and shows definitively that it is a different class of emission from conventional spontaneous or stimulated emission. Coherent population gratings induced in the semiconductor medium under strong electrical pumping have been shown to cause a major decrease of the group refractive index, in the range of 5-40%. This decrease is much greater than that caused by conventional carrier depletion or chirp mechanisms. The decrease in refractive index in turn causes faster-than-c propagation of femtosecond pulses. The measurement also proves the existence of coherent amplification of electromagnetic pulses in semiconductors at room temperature, the coherence being strongly enhanced by interactions of the light with coherent transient gratings locked to carrier gratings. This pulse-generation technique is anticipated to have great potential in applications where highly coherent femtosecond optical pulses must be generated on demand.

摘要

本文报道了在超辐射发射 regime 下多接触半导体异质结构中超超光速脉冲传播的观测结果,并明确表明这是一类与传统自发或受激发射不同的发射。在强电泵浦下半导体介质中诱导产生的相干布居光栅已被证明会导致群折射率大幅降低,降低范围为 5 - 40%。这种降低远大于传统载流子耗尽或啁啾机制所导致的降低。折射率的降低进而导致飞秒脉冲以超光速 c 传播。该测量还证明了室温下半导体中电磁脉冲的相干放大的存在,通过光与锁定到载流子光栅的相干瞬态光栅的相互作用,相干性得到了极大增强。预计这种脉冲产生技术在必须按需产生高相干飞秒光脉冲的应用中具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56a5/6059958/25bd374badbb/lsa201686f1.jpg

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