School of Engineering and Information Technology, University College, The University of New South Wales, Canberra, ACT 2600, Australia.
Opt Lett. 2009 Aug 15;34(16):2465-7. doi: 10.1364/ol.34.002465.
We report on the successful implementation of an approach to locking the frequencies of an optical parametric oscillator (OPO)-based squeezed-vacuum source and its driving laser. The technique allows the simultaneous measurement of the phase shifts induced by a cavity, which may be used for the purposes of frequency locking, as well as the simultaneous measurement of the sub-quantum-noise-limited (sub-QNL) phase quadrature output of the OPO. The homodyne locking technique is cheap, easy to implement, and has the distinct advantage that subsequent homodyne measurements are automatically phase locked. The homodyne locking technique is also unique in that it is a sub-QNL frequency discriminator.
我们报告了一种成功实现光学参量振荡器(OPO)压缩真空源及其驱动激光频率锁定的方法。该技术允许同时测量腔引起的相移,这可用于频率锁定的目的,以及同时测量 OPO 的亚量子噪声限制(sub-QNL)正交相位输出。该外差锁定技术价格便宜,易于实现,具有明显的优势,即后续的外差测量自动锁定相位。外差锁定技术也是独一无二的,因为它是一种亚量子噪声限制的频率鉴别器。