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    • 1. 发明授权
    • Article comprising a strain-compensated QC laser
    • 文章包括应变补偿QC激光
    • US6023482A
    • 2000-02-08
    • US12300
    • 1998-01-23
    • Federico CapassoAlfred Yi ChoSung-Nee George ChuJerome FaistAlbert Lee HutchinsonDeborah Lee Sivco
    • Federico CapassoAlfred Yi ChoSung-Nee George ChuJerome FaistAlbert Lee HutchinsonDeborah Lee Sivco
    • H01S5/00H01S5/06H01S5/12H01S5/34H01S3/19
    • B82Y20/00H01S5/3402H01S5/0612H01S5/12H01S5/3403H01S5/3406
    • A quantum cascade (QC) laser has a multilayer core region comprising alternating layers of a first and a second semiconductor material, with lattice constants a.sub.1 and a.sub.2, respectively. The first material is selected such that a.sub.1 >a.sub.0, where a, is the lattice constant of the substrate (typically InP), and the second material is selected such that a.sub.2 >a.sub.0. The materials are also selected such that the conduction band discontinuity .DELTA.E.sub.c between the first and second materials is greater than 520 meV in absolute value. The multilayer core comprises a multiplicity of essentially identical multilayer repeat units. The layer thicknesses and materials of the repeat units are selected to substantially provide strain compensation over a repeat unit. QC lasers according to this invention preferably comprise a distributed feedback feature, (e.g., a Bragg grating) selected to ensure single mode laser emission, and can be designed for operation at a wavelength in the first atmospheric window, typically about 3-5 .mu.m. Such lasers can advantageously be used for absorption spectroscopy, e.g., for emission monitoring.
    • 量子级联(QC)激光器具有包括第一和第二半导体材料的交替层的多层芯区域,分别具有晶格常数a1和a2。 选择第一材料使得a1> a0,其中a是衬底的晶格常数(通常为InP),并且选择第二材料使得a2> a0。 这些材料也被选择成使得第一和第二材料之间的导带不连续性DELTA Ec绝对值大于520meV。 多层芯包括多个基本相同的多层重复单元。 选择重复单元的层厚度和材料以在重复单元上基本上提供应变补偿。 根据本发明的QC激光器优选地包括被选择用于确保单模激光发射的分布反馈特征(例如,布拉格光栅),并且可以设计成在第一大气窗口中的波长下操作,通常为约3-5μm 。 这种激光器可以有利地用于吸收光谱,例如用于发射监测。