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Terahertz Quantum Cascade Lasers

机译:太赫兹量子级联激光器

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摘要

The terahertz region (1-10 THz) of the electromagnetic spectrum offers paramount opportunities in spec-troscopy, remote sensing, medical imaging and free space communications. Yet, the use of THz waves in all these fields has been limited by the lack of appropriate, convenient sources. We here report on unipolar semiconductor injection lasers that emit at THz frequencies (4.3 THz, λ~69μm and 3.5 THz, λ~85/μm) and possess the potential for device-like implementation. They are based on the quantum cascade scheme employing interminiband transitions in the technologically mature AlGaAs/GaAs material system and feature a novel kind of waveguide loosely relying on the surface plasmon concept. Continuous-wave laser emission is achieved with low tresholds of a few hundred A/cm~2 up to 45 K heat sink temperature and maximum output powers of more than 4 mW. Under pulsed excitation, peak output powers of 4.5 mW at low temperatures and still 1 mW at 65 K are measured. The maximum operating temperature is 67 K.
机译:电磁谱的太赫兹地区(1-10THz)在规格镜头,遥感,医学成像和自由空间通信中提供了最重要的机会。然而,在所有这些领域中使用THz波受到缺乏适当,方便的来源的限制。我们在这里报告了在THz频率(4.3THz,λ〜69μm和3.5THz,λ〜85 /μm)上发射的单极半导体注入激光器,并具有类似设备的实现的可能性。它们基于在技术成熟的Algaas / GaAs材料系统中采用Interminiband转换的量子级联方案,并具有松散地依赖表面等离子体概念的新颖的波导。通过低特拉尔德的低特拉多克,高达45 k散热温度和超过4mW的最大输出功率,实现连续波激光发射。在脉冲激励下,测量低温下4.5mW且仍然在65 k下仍为1mW的峰值输出功率。最大工作温度为67 k。

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