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Highly temperature insensitive, low threshold-current density (λ = 8.7-8.8 μm) quantum cascade lasers

机译:高度不敏感温度,低阈值电流密度(λ= 8.7-8.8μm)量子级联激光器

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摘要

By stepwise tapering, both the barrier heights and quantum-well depths in the active regions of 8.7-8.8 μm-emitting quantum-cascade-laser (QCL) structures, virtually complete carrier-leakage suppression is achieved. Such step-taper active-region-type QCLs possess, for 3 mm-long devices with high-reflectivity-coated back facets, threshold-current characteristic temperature coefficients, T_0, as high as 283 K and slope-efficiency characteristic temperature coefficients, T_1, as high as 561 K, over the 20-60 ℃ heatsink-temperature range. These high T_0 and T_1 values reflect at least a factor of four reduction in carrier-leakage current compared to conventional 8-9 μm-emitting QCLs. Room temperature, pulsed, threshold-current densities are 1.58 kA/cm~2; values comparable to those for 35-period conventional QCLs of similar injector-region doping level. Superlinear behavior of the light-current curves is shown to be the result of the onset of resonant extraction from the lower laser level at a drive level of ~1.3× threshold. Maximum room-temperature slope efficiencies are 1.23 W/A; that is, slope efficiency per period values of 35 mW/A, which are 37%-40% higher than for same-geometry conventional 8-9 μm-emitting QCLs. Since the waveguide-loss coefficients are very similar, we estimate that the internal differential efficiency is at least 30% higher than in conventional QCLs. Such high internal differential efficiency values reflect the combined effect of nearly complete carrier-leakage suppression and high differential efficiency of the laser transition (~90%), due to resonant extraction from the lower laser level.
机译:通过逐步锥形化,在发射8.7-8.8μm发射量子级联激光器(QCL)结构的有源区中的势垒高度和量子阱深度都可以实现几乎完全的载流子泄漏抑制。对于具有高反射涂层的背面的3毫米长的器件,这种阶梯形有源区型QCL具有高达283 K的阈值电流特性温度系数T_0和斜率效率特性温度系数T_1在20-60℃的散热器温度范围内,高达561K。与传统的发射8-9μm的QCL相比,这些高T_0和T_1值至少反映了载流子泄漏电流减小了四倍。室温,脉冲,阈值电流密度为1.58 kA / cm〜2;该值可与类似注入区掺杂水平的35周期常规QCL的值相比。光电流曲线的超线性行为表明是从较低的激光水平在〜1.3×阈值的驱动水平开始共振提取的结果。室温最大斜率效率为1.23 W / A;也就是说,每周期的斜率效率值为35 mW / A,比相同几何尺寸的传统8-9μm发射QCL高37%-40%。由于波导损耗系数非常相似,因此我们估计内部差分效率至少比常规QCL高30%。如此高的内部差分效率值反映了由于从较低激光水平的共振提取,几乎完全实现了载流子泄漏抑制和激光转换的高差分效率(〜90%)的综合效果。

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  • 来源
    《Applied Physics Letters》 |2015年第15期|151106.1-151106.5|共5页
  • 作者单位

    Department of Electrical and Computer Engineering, University of Wisconsin Madison, 1415 Engineering Drive, Madison, Wisconsin 53706, USA;

    Department of Electrical and Computer Engineering, University of Wisconsin Madison, 1415 Engineering Drive, Madison, Wisconsin 53706, USA;

    Department of Electrical and Computer Engineering, University of Wisconsin Madison, 1415 Engineering Drive, Madison, Wisconsin 53706, USA;

    Department of Electrical and Computer Engineering, University of Wisconsin Madison, 1415 Engineering Drive, Madison, Wisconsin 53706, USA;

    Intraband, LLC, 200 N. Prospect Ave., Madison, Wisconsin 53726, USA;

    Intraband, LLC, 200 N. Prospect Ave., Madison, Wisconsin 53726, USA;

    Department of Electrical and Computer Engineering, University of Wisconsin Madison, 1415 Engineering Drive, Madison, Wisconsin 53706, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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