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用于太赫兹量子级联激光器的银基表面等离子体波导。

Silver-based surface plasmon waveguide for terahertz quantum cascade lasers.

作者信息

Han Y J, Li L H, Zhu J, Valavanis A, Freeman J R, Chen L, Rosamond M, Dean P, Davies A G, Linfield E H

出版信息

Opt Express. 2018 Feb 19;26(4):3814-3827. doi: 10.1364/OE.26.003814.

Abstract

Terahertz-frequency quantum cascade lasers (THz QCLs) based on ridge waveguides incorporating silver waveguide layers have been investigated theoretically and experimentally, and compared with traditional gold-based devices. The threshold gain associated with silver-, gold- and copper-based devices, and the effects of titanium adhesion layers and top contact layers, in both surface-plasmon and double-metal waveguide geometries, have been analysed. Our simulations show that silver-based waveguides yield lower losses for THz QCLs across all practical operating temperatures and frequencies. Experimentally, QCLs with silver-based surface-plasmon waveguides were found to exhibit higher operating temperatures and higher output powers compared to those with identical but gold-based waveguides. Specifically, for a three-well resonant phonon active region with a scaled oscillator strength of 0.43 and doping density of 6.83 × 10 cm, an increase of 5 K in the maximum operating temperature and 40% increase in the output power were demonstrated. These effects were found to be dependent on the active region design, and greater improvements were observed for QCLs with a larger radiative diagonality. Our results indicate that silver-based waveguide structures could potentially enable THz QCLs to operate at high temperatures.

摘要

基于包含银波导层的脊形波导的太赫兹频率量子级联激光器(THz QCL)已进行了理论和实验研究,并与传统的金基器件进行了比较。分析了表面等离子体和双金属波导几何结构中与银基、金基和铜基器件相关的阈值增益,以及钛粘附层和顶部接触层的影响。我们的模拟表明,在所有实际工作温度和频率下,银基波导对太赫兹量子级联激光器的损耗更低。实验发现,与具有相同但金基波导的量子级联激光器相比,具有银基表面等离子体波导的量子级联激光器表现出更高的工作温度和更高的输出功率。具体而言,对于一个具有0.43的缩放振子强度和6.83×10 cm的掺杂密度的三阱共振声子有源区,最大工作温度提高了5 K,输出功率提高了40%。发现这些效应取决于有源区设计,对于具有更大辐射对角性的量子级联激光器观察到了更大的改进。我们的结果表明,银基波导结构可能使太赫兹量子级联激光器能够在高温下工作。

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