Numata Kenji, Chen Jeffrey R, Wu Stewart T
Department of Astronomy, University of Maryland, College Park, Maryland 20742, USA.
Opt Express. 2012 Jun 18;20(13):14234-43. doi: 10.1364/OE.20.014234.
We report a precision and fast wavelength tuning technique demonstrated for a digital-supermode distributed Bragg reflector laser. The laser was dynamically offset-locked to a frequency-stabilized master laser using an optical phase-locked loop, enabling precision fast tuning to and from any frequencies within a ~40-GHz tuning range. The offset frequency noise was suppressed to the statically offset-locked level in less than ~40 μs upon each frequency switch, allowing the laser to retain the absolute frequency stability of the master laser. This technique satisfies stringent requirements for gas sensing lidars and enables other applications that require such well-controlled precision fast tuning.
我们报道了一种用于数字超模分布布拉格反射器激光器的精确且快速的波长调谐技术。该激光器通过一个光学锁相环动态地偏移锁定到一个频率稳定的主激光器上,从而能够在约40吉赫兹的调谐范围内精确快速地调谐到任何频率或从任何频率调出。每次频率切换时,偏移频率噪声在不到约40微秒的时间内被抑制到静态偏移锁定水平,使得该激光器能够保持主激光器的绝对频率稳定性。这种技术满足了气体传感激光雷达的严格要求,并适用于其他需要这种精确控制的快速调谐的应用。