Sibley Paul G, Ward Robert L, Roberts Lyle E, Francis Samuel P, Shaddock Daniel A
Opt Express. 2020 Mar 30;28(7):10400-10424. doi: 10.1364/OE.388381.
Digitally enhanced heterodyne interferometry (DEHI) combines the sub-wavelength displacement measurements of conventional laser interferometry with the multiplexing capabilities of spread-spectrum modulation techniques to discriminate between multiple electric fields at a single photodetector. Technologies that benefit from DEHI include optical phased arrays, which require the simultaneous phase measurement of a large number of electric fields. A consequence of measuring the phase of multiple electric fields is the introduction of crosstalk, which can degrade measurement precision. This work analytically and experimentally investigates the crosstalk when using DEHI to measure the phase of an arbitrarily large number of electric fields at a single photodetector. Also considered is the practical limit the dynamic range of the photodetector and shot noise imposes on the number of electric fields that can be discriminated. We describe how to minimize crosstalk by design. Experimental results demonstrate up to 55 dB suppression of crosstalk between two electric fields with a phase measurement bandwidth of 20 kHz and 1-10 pm/Hz displacement sensitivity for audio frequencies. Additionally, we demonstrate scaling of crosstalk proportional to the square-root of the number of electric fields when using an M-sequence modulation. Based on this analysis, we estimate that digitally enhanced heterodyne interferometry should be capable of measuring the phase of several hundreds of electric fields at a single photodetector while maintaining the same measurement bandwidth.
数字增强外差干涉测量法(DEHI)将传统激光干涉测量法的亚波长位移测量与扩频调制技术的复用能力相结合,以在单个光电探测器上区分多个电场。受益于DEHI的技术包括光学相控阵,其需要同时测量大量电场的相位。测量多个电场相位的一个结果是引入串扰,这会降低测量精度。这项工作通过分析和实验研究了使用DEHI在单个光电探测器上测量任意数量电场相位时的串扰。还考虑了光电探测器的动态范围和散粒噪声对可区分电场数量所施加的实际限制。我们描述了如何通过设计将串扰降至最低。实验结果表明,在20 kHz的相位测量带宽和音频频率下1-10 pm/Hz的位移灵敏度下,两个电场之间的串扰可抑制高达55 dB。此外,我们证明了使用M序列调制时,串扰与电场数量的平方根成正比。基于此分析,我们估计数字增强外差干涉测量法应该能够在单个光电探测器上测量数百个电场的相位,同时保持相同的测量带宽。