Martínez-Rincón Julián, Mullarkey Christopher A, Viza Gerardo I, Liu Wei-Tao, Howell John C
Opt Lett. 2017 Jul 1;42(13):2479-2482. doi: 10.1364/OL.42.002479.
We present an interferometric technique for measuring ultrasmall tilts. The information of a tilt in one of the mirrors of a modified Sagnac interferometer is carried by the phase difference between the counter-propagating laser beams. Using a small misalignment of the interferometer, orthogonal to the plane of the tilt, a bimodal (or two-fringe) pattern is induced in the beam's transverse power distribution. By tracking the mean of such a distribution, using a split detector, a sensitive measurement of the phase is performed. With 1.2 mW of continuous-wave laser power, the technique has a shot noise limited sensitivity of 56 frad/Hz and a measured noise floor of 200 frad/Hz for tilt frequencies above 2 Hz. A tilt of 200 frad corresponds to a differential displacement of 4.0 fm in our setup. The novelty of the protocol relies on signal amplification due to the misalignment and on good performance at low frequencies. A noise floor of about 70 prad/Hz is observed between 2 and 100 mHz.
我们提出了一种用于测量超小倾斜的干涉测量技术。在改进的萨格纳克干涉仪的其中一面镜子中,倾斜信息由反向传播的激光束之间的相位差携带。利用干涉仪与倾斜平面正交的微小失调,在光束的横向功率分布中会产生双峰(或双条纹)图案。通过使用分裂探测器跟踪这种分布的均值,可对相位进行灵敏测量。在连续波激光功率为1.2毫瓦的情况下,该技术对于高于2赫兹的倾斜频率,散粒噪声限制灵敏度为56弧度/赫兹,测量本底噪声为200弧度/赫兹。在我们的装置中,200弧度的倾斜对应于4.0飞米的差分位移。该方案的新颖之处在于由于失调导致的信号放大以及在低频下的良好性能。在2至100毫赫兹之间观察到约70皮弧度/赫兹的本底噪声。