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A comparative study of 3.6μm and 1.55μm atmospheric transmission

机译:3.6μm和1.55μm大气透过率的比较研究

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The use of 1.55μm lasers for free space optical links has become well established. While one expects there to be advantages to operating at 3.6μm, namely higher transmission through water vapor and reduced scintillation, the availability of both lasers and detectors at the mid IR wavelength is not as mature as those available at the telecomm choice of 1.55μm. However, there are potential schemes for using frequency conversion to probe the atmosphere in the mid-ir but to detect back in the near-ir.A sequence of experiments has been conducted, over a 16km one-way link across the Chesapeake Bay, to directly compare the intensity variances and the power spectrum imposed by the atmosphere at the two wavelengths. An interband cascade laser was used which operated at a wavelength of 3.6μm and had an output power of 100mW. The 1.55μrn system used standard telecomm parts. Data were recorded simultaneously from both systems at 4kHz and were digitized using a 16-bit card. A telescope measured the angle-of-arrival variance of the 1.55mm beam in order to give a measure of the atmospheric structure constant C_n~2 In addition a visibility monitor and weather station were usually operational at each end of the link.
机译:在自由空间光链路中使用1.55μm激光器已经很成熟。尽管人们希望在3.6μm的波长下工作具有优势,即通过水蒸气的透射率更高,并且闪烁减少,但中红外波长的激光器和检测器的可用性还不如1.55μm的电信选择成熟。但是,存在使用频率转换探测中红外大气层但探测近红外大气层的潜在方案。 在横跨切萨皮克湾的一条16公里单向链路上进行了一系列实验,以直接比较两个波长处的大气强度变化和功率谱。使用带间级联激光器,其在3.6μm的波长下操作并且具有100mW的输出功率。 1.55μm系统使用标准的电信零件。从两个系统同时以4kHz记录数据,并使用16位卡将其数字化。望远镜测量了1.55mm光束的到达角方差,以便测量大气结构常数C_n〜2。此外,通常在链路的每一端都运行能见度监测器和气象站。

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