首页> 外文会议>Conference on novel in-plane semiconductor lasers VIII; 20090126-29; San Jose, CA(US) >High power DFB lasers for D1 and D2 rubidium absorption spectroscopy and atomic clocks
【24h】

High power DFB lasers for D1 and D2 rubidium absorption spectroscopy and atomic clocks

机译:高功率DFB激光器,用于D1和D2 absorption吸收光谱法和原子钟

获取原文
获取原文并翻译 | 示例

摘要

Distributed feedback ridge-waveguide lasers have been developed. The distributed feedback is provided by a second order grating, formed into an InGaP/GaAsP/InGaP multilayer structure. A threshold current of 40 mA and a differential quantum efficiency of 0.8 W/A is achieved. The lasers emit up to 200 mW in a single lateral and longitudinal mode around 794.7 nm and 780.0 nm. These wavelength regions are of particular interest for applications in absorption spectroscopy of the rubidium D1 and D2 lines and atomic clocks. These applications require a stable lasing wavelength with small spectral line width and possibility of a fine tuning. By changing the output power with current and / or the heatsink temperature the wavelength can be tuned to reveal the hyperfine structure of the rubidium lines. This was verified by passing the laser emission through a 80 mm long rubidium cell and measuring the transmitted power versus current and temperature. It is shown, that a hyperfine structure measurement of the rubidium lines can be performed in a less than 9 μs. Due to the large side mode suppression ratio -of >45 dB and the small spectral line width of ~ 200 kHz these lasers are ideally suited for absorption spectroscopy
机译:已经开发了分布式反馈脊形波导激光器。分布的反馈由形成InGaP / GaAsP / InGaP多层结构的二阶光栅提供。达到40 mA的阈值电流和0.8 W / A的差分量子效率。激光器在794.7 nm和780.0 nm左右的单个横向和纵向模式中发射高达200 mW的光。这些波长区域对于in D1和D2线和原子钟的吸收光谱学中的应用特别感兴趣。这些应用需要稳定的激射波长,较小的光谱线宽度和微调的可能性。通过用电流和/或散热器温度改变输出功率,可以调节波长以显示the线的超精细结构。通过使激光发射通过80毫米长的cell电池并测量发射功率与电流和温度的关系,可以验证这一点。结果表明,lines线的超精细结构测量可以在不到9μs的时间内完成。由于较大的边模抑制比-> 45 dB和较小的光谱线宽度〜200 kHz,这些激光器非常适合吸收光谱

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