Heterogeneous Terahertz Quantum Cascade Laser for Ultra-Broadband Emission

M. Jaidl, M. Beiser, M. Giparakis, M. Kainz, D. Theiner, B. Limbacher, M. Ertl, A. M. Andrews, G. Strasser, J. Darmo, K. Unterrainer
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Abstract

Broadband emission in the terahertz spectral region is a prerequisite for applications such as spectroscopy or white light sources. Terahertz quantum cascade lasers provide high output powers combined with a compact design in this frequency range. Since the emission wavelength can be tailored by bandstructure engineering in these devices, multiple active region designs emitting at different wavelengths can be combined in a single structure [1]. The formation of frequency combs also benefits from a broadband gain profile through the connected frequency dependent dispersion [2]. Here, we present a heterogeneous terahertz quantum cascade laser consisting of five individual active regions (ABCDE). The devices lase in pulsed and continuous-wave operation and emit in a spectral range from 1.9-4.5 THz, covering a bandwidth of 1.37 octaves [3].
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用于超宽带发射的非均匀太赫兹量子级联激光器
太赫兹光谱区域的宽带发射是光谱学或白光源等应用的先决条件。太赫兹量子级联激光器在这个频率范围内提供高输出功率和紧凑的设计。由于这些器件可以通过带结构工程定制发射波长,因此可以将发射不同波长的多个有源区域设计组合在一个结构中[1]。频率梳的形成也受益于通过连接的频率相关色散获得的宽带增益曲线[2]。在这里,我们提出了一个由五个单独的活跃区域(ABCDE)组成的异质太赫兹量子级联激光器。该器件以脉冲和连续波工作方式发射激光,发射光谱范围为1.9-4.5太赫兹,带宽为1.37倍频[3]。
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