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量子级联激光器阵列的色散补偿波长光束合成

Dispersion-compensated wavelength beam combining of quantum-cascade-laser arrays.

作者信息

Goyal Anish K, Spencer Melissa, Shatrovoy Oleg, Lee Benjamin G, Diehl Laurent, Pfluegl Christian, Sanchez Antonio, Capasso Federico

机构信息

MIT Lincoln Laboratory, Lexington, Massachusetts 02420, USA.

出版信息

Opt Express. 2011 Dec 19;19(27):26725-32. doi: 10.1364/OE.19.026725.

Abstract

A multiwavelength array of distributed feedback (DFB) quantum cascade lasers (QCLs) that spans λ = 8.28 to 9.62 μm is wavelength beam combined (WBC) using both single-grating and dual-grating designs. WBC with a single grating results in a pointing error of 3-times the beam divergence for a single laser and arises from the nonlinear dispersion of the grating. By adding a second grating to compensate for the nonlinear dispersion, the pointing error is reduced to only 13% of the beam divergence for a single laser. A transceiver based on the dual-grating-WBC QCL was used to measure the transmittance of a polymer sheet placed between itself and a retroreflector over a round-trip distance of 70 meters.

摘要

一个覆盖波长范围从λ = 8.28至9.62μm的分布式反馈(DFB)量子级联激光器(QCL)的多波长阵列,采用单光栅和双光栅设计进行波长光束合成(WBC)。单光栅的WBC会导致单台激光器的指向误差为光束发散角的3倍,这是由光栅的非线性色散引起的。通过添加第二个光栅来补偿非线性色散,指向误差降低至单台激光器光束发散角的仅13%。基于双光栅WBC QCL的收发器用于测量置于其自身与后向反射器之间的聚合物片材在70米往返距离上的透过率。

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