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The Quantum Cascade Lasers: the semiconductor solution for lasers in the 3 - 5μm wavelength region

机译:量子级联激光器:适用于3-5μm波长区域的激光器的半导体解决方案

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The quantum cascade laser is a semiconductor light source based on resonant tunnelling and optical transitions between quantised conduction band states. In these devices the principles of operation are not based on the physical properties of the constituent materials, but arise from the layer sequence forming the heterostructure. The quantum design and the control of the layer thickness, down to an atomic mono-layer, allows one to ascribe into a semiconductor crystal, artificial potentials with the desired electronic energy levels and wavefunctions. In recent years the performance of quantum cascade lasers has improved markedly and this semiconductor technology is now an attractive choice for the fabrication of mid-far infrared lasers in a very wide spectral range (3.5 - 160μm). At present, the best performances are reached at wavelength between 5 - 10μm, but recent results on new material systems with deeper quantum wells are indicating that this technology will be soon available also in the 3 - 5μm spectral region.
机译:量子级联激光器是一种基于共振隧穿和量化导带状态之间的光学跃迁的半导体光源。在这些装置中,操作原理不是基于构成材料的物理性质,而是源自形成异质结构的层序列。量子设计和层厚度控制直至原子单层,使人们可以将具有所需电子能级和波函数的人造势归因于半导体晶体。近年来,量子级联激光器的性能已显着提高,并且该半导体技术现在成为制造非常宽光谱范围(3.5-160μm)的中远红外激光器的有吸引力的选择。目前,在5-10μm的波长处可以达到最佳性能,但是最新的具有更深量子阱的新材料系统的结果表明,该技术也将很快在3-5μm的光谱范围内可用。

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