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Temporal dynamics of THz quantum cascade laser frequency combs with strong injector anticrossing

机译:THz量子级联激光频率梳的强注入子抗穿越时空动力学。

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摘要

Due to their broad spectral bandwidth and superior temperature performance, resonant phonon quantum cascade laser (QCL) designs have become the active-region of choice for many of the leading groups in terahertz (THz) QCL research. These gain media can vary substantially in the number of wells and barriers as well as their corresponding thicknesses, but all such structures employ a common resonant phonon lower laser level depopulation scheme and a resonant tunneling mechanism for efficient current injection into the upper laser level. The presence of a strong anticrossing between the injector and upper laser level leads, under the right conditions, to a pronounced splitting of the emission spectra into high and low frequency lobe components around some central transition frequency. This spectral hole burning effect also manifests itself in the time domain as a form of pulse switching between signals corresponding to the two lobes of the split gain, as it has already been experimentally observed. This process was termed as a form of temporal hole burning (THB), which next to spectral and spatial hole burning, completes the plethora of dynamic "hole burning" phenomena encountered in QCLs. In this work, we investigate the temporal dynamics of THz QCLs with a strong injector anticrossing via numerical solution of the Maxwell-Bloch laser equations. Our simulation results show remarkable agreement with experiment and we further outline the development of a theoretical model which intuitively explains this effect.
机译:由于其宽频谱带宽和出色的温度性能,谐振声子量子级联激光器(QCL)设计已成为太赫兹(THz)QCL研究中许多领先群体的首选有源区域。这些增益介质在阱和势垒的数量以及其相应的厚度方面可以有很大的不同,但是所有这些结构都采用了常见的共振声子下激光能级减少方案和共振隧穿机制,以有效地将电流注入上激光能级。在正确的条件下,在进样器和较高的激光能级之间存在很强的抗交叉作用,会导致发射光谱在某些中心过渡频率附近明显分裂为高频和低频波瓣分量。如已经在实验中观察到的,这种频谱烧孔效应还在时域中以脉冲形式在与分割增益的两个波瓣相对应的信号之间切换而表现出来。该过程被称为暂时性空穴烧蚀(THB)的一种形式,它紧随光谱和空间空穴烧蚀,完成了QCL中遇到的过多动态“空穴烧灼”现象。在这项工作中,我们通过Maxwell-Bloch激光方程的数值解来研究具有强注入器抗穿越性的THz QCL的时间动态。我们的仿真结果显示出与实验的显着一致性,并且我们进一步概述了可以直观地解释这种效果的理论模型的开发。

著录项

  • 来源
    《Laser physics and applications》|2016年|102260n.1-102260n.7|共7页
  • 会议地点 Sozopol(BG)
  • 作者单位

    Institute for Nanoelectronics, Technical University of Munich, D-80333 Munich, Germany;

    Department of Electrical Engineering and Computer Science, Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA;

    Department of Electrical Engineering and Computer Science, Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA;

    Institute for Nanoelectronics, Technical University of Munich, D-80333 Munich, Germany;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Quantum cascade lasers; frequency combs; ultrafast phenomena; spectral hole burning; temporal hole burning;

    机译:量子级联激光器;频率梳超快现象;光谱烧孔颞孔烧伤;

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