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量子级联激光器与自由空间光通信中的克鲁斯模型。

Quantum cascade lasers and the Kruse model in free space optical communication.

作者信息

Corrigan Paul, Martini Rainer, Whittaker Edward A, Bethea Clyde

机构信息

Department of Physics, Stevens Institute of Technology, Hoboken, NJ 07030, USA.

出版信息

Opt Express. 2009 Mar 16;17(6):4355-9. doi: 10.1364/oe.17.004355.

Abstract

Mid-infrared (MIR) free space optical communication has seen renewed interest in recent years due to advances in quantum cascade lasers. We present data from a multi-wavelength test-bed operated in the New York metropolitan area under realistic weather conditions. We show that a mid-infrared source (8.1 microm) provides enhanced link stability with 2x to 3x greater transmission over near infrared wavelengths (1.3 microm & 1.5 microm) during fog formation and up to 10x after a short scavenging rain event where fog developed and visibility reduced to approximately 1 km. We attribute the improvement to less Mie scattering at longer wavelengths. We confirm that this result is generally consistent with the empirical benchmark Kruse model at visibilities above 2.5 km, but towards the 1 km eye-seeing limit we measured the equivalent MIR visibility to be > 10 km.

摘要

近年来,由于量子级联激光器的发展,中红外(MIR)自由空间光通信重新引起了人们的关注。我们展示了在纽约大都市区真实天气条件下运行的多波长试验台的数据。我们发现,中红外光源(8.1微米)在雾形成期间比近红外波长(1.3微米和1.5微米)具有更高的链路稳定性,传输能力提高2至3倍,在短时间降雨清除雾气后,能见度降至约1公里时,传输能力提高至10倍。我们将这种改善归因于较长波长处较少的米氏散射。我们证实,在能见度高于2.5公里时,这一结果通常与经验基准克鲁斯模型一致,但在接近1公里的肉眼能见极限时,我们测得等效的中红外能见度大于10公里。

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