首页> 外文会议>Modeling Aspects in Optical Metrology >Spectral Characterization of a Fabry-Perot Etalon operating in Short Wave Infra-Red (SWIR) Region
【24h】

Spectral Characterization of a Fabry-Perot Etalon operating in Short Wave Infra-Red (SWIR) Region

机译:在短波红外(SWIR)区域中操作的法布里 - 珀罗标准龙的光谱特征

获取原文
获取外文期刊封面目录资料

摘要

A promising technique for precise spectral characterization of solid Etalon operating in SWIR wavelength is demonstrated using tunable laser with a minimum wavelength scan step interval of 1 picometer. Measurement is carried out for 1640nm - 1660nm, an important region containing greenhouse gas absorption spectra. The etalon considered for characterization is made of fused silica. The thickness is nearly 3.46 micron with physical diameter of 25.4 mm and clear aperture of 23 mm. The etalon has a finesse of 7.25 and extremely narrow bandwidth like 0.4 nm or 400 picometer. The measurement was as well carried out with an Optical Spectrum Analyzer (OSA). The conventional OSA instrument had a resolution of 80 picometer limiting the measurement capability to detect a spectral shift as fine as 50 picometer. Also the measured bandwidth had an error of ± 40 picometer over a spectral bandwidth of 400 picometer which is nearly ±10 %. This leads to the use of a tunable laser exhibiting a provision to vary the wavelength at a step of 1 picometer. This method provides measurement accuracy at least 4 times better than the earlier method. Accuracy may be further improved by making the wavelength scan step interval even finer. The absorption due to presence of greenhouse gas like methane is higher for the etalons with narrower bandwidth. This method can provide very good accuracy for characterization of etalons with spectral bandwidth as narrow as 50 picometer.
机译:使用可调谐激光器对SWIR波长运行的固体标准龙的精确光谱表征的有希望的技术进行了说明,其可调谐激光具有1微米的最小波长扫描步长。测量为1640nm - 1660nm,是含有温室气体吸收光谱的重要区域。考虑表征的标准具由熔融二氧化硅制成。厚度接近3.46微米,物理直径为25.4毫米,透明孔径为23毫米。 Etalon具有7.25的精细性,带宽极其窄的带宽,如0.4nm或400微米。使用光谱分析仪(OSA),测量也是如此。传统的OSA仪器的分辨率为80型微微仪,限制了测量能力,以检测光谱变化为晴/米的光谱变化。此外,测量的带宽在400微米尺的光谱带宽上的误差±40薄皮仪,差距为近±10%。这导致使用可调谐激光器,该调节激光器在1微米计的步骤中提供提供的节约以改变波长。该方法提供的测量精度至少比早期方法更好4倍。通过使波长扫描步长间隔甚至更精细地,可以进一步提高精度。由于带宽较窄的标准具,因此甲烷存在的温室气体存在的吸收。该方法可以提供非常好的准确性,用于表征标准元,光谱带宽为窄至50微米尺。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号