McRae T G, Lee Kwan H, McGovern M, Gwyther D, Bowen W P
Department of Physics, University of Queensland, Brisbane, Queensland, Australia.
Opt Express. 2009 Nov 23;17(24):21977-85. doi: 10.1364/OE.17.021977.
We experimentally demonstrate thermo-optic locking of a semiconductor laser to an integrated toroidal optical microcavity. The lock is maintained for time periods exceeding twelve hours, without requiring any electronic control systems. Fast control is achieved by optical feedback induced by scattering centers within the microcavity, with thermal locking due to optical heating maintaining constructive interference between the cavity and the laser. Furthermore, the optical feedback acts to narrow the laser linewidth, with ultra high quality microtoroid resonances offering the potential for ultralow linewidth on-chip lasers.
我们通过实验证明了半导体激光器与集成环形光学微腔的热光锁定。这种锁定可维持超过12小时的时间段,无需任何电子控制系统。通过微腔内散射中心引起的光学反馈实现快速控制,由于光学加热导致的热锁定维持了腔与激光器之间的相长干涉。此外,光学反馈起到了缩窄激光线宽的作用,超高品质的微环谐振为超低线宽片上激光器提供了潜力。