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Terahertz bound-to-continuum quantum-cascade lasers based on optical-phonon scattering extraction

机译:基于光声子散射提取的太赫兹束缚-连续谱量子级联激光器

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In this paper we present a new QC THz laser with a design that combines the advantages of the bound-to-continuum approach together with the use of an LO phonon resonance to enable fast scattering of the carriers out of the lower miniband. As compared to the previous bound-to-continuum design the large energy separation significantly reduces the lower state lifetime by allowing optical phonon scattering from electrons with very small in-plane kinetic energy and reduces the thermal backfilling of the lower state. Processing of the devices has been performed using both single plasmon and double metal waveguides. Laser emission takes place at an energy of 14.9 meV just after threshold, in good agreement with the designed photon energy. Pulsed operation could be observed up to an heatsink temperature of 116 K in a 1.5 mm-long. 110 /spl mu/m wide laser ridge with HR backfacet coating. CW operation is possible in narrow stripes because of the high lateral mode confinement provided by the double-metal waveguide and maximum operating temperature rises up to 53 K in a 0.75 mm-long, 70 /spl mu/m wide laser ridge.
机译:在本文中,我们介绍了一种新型QC THz激光器,其设计结合了束缚连续方法的优势以及LO声子共振的使用,可以使载波快速散射出较低的微带。与以前的连续边界设计相比,大的能量分离通过允许来自具有极小的面内动能的电子进行光子声子散射而显着缩短了低态寿命,并减少了低态的热回填。使用单等离子体激元和双金属波导都已经执行了器件的处理。刚好在阈值之后,激光发射以14.9 meV的能量发生,与设计的光子能量高度吻合。在1.5 mm长的散热片中,可以观察到高达116 K的散热器温度的脉冲操作。带有HR后表面涂层的110 / splμ/ m宽的激光脊。由于双金属波导提供了较高的横向模式限制,因此在窄条纹中可以进行连续波操作,并且在0.75毫米长,70 / splμm/ m宽的激光脊中,最高工作温度上升至53K。

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