光学
干涉测量
物理
角位移
干扰(通信)
流离失所(心理学)
旋转(数学)
迈克尔逊干涉仪
角动量
相(物质)
数学
声学
计算机科学
心理治疗师
几何学
频道(广播)
量子力学
计算机网络
心理学
作者
Huali Lu,Yuanyuan Hao,Chenji Guo,Xunhua Huang,Hui Hao,Dongmei Guo,Hua Zhao,Wanchun Tang,Peng Wang,Hongpu Li
标识
DOI:10.1109/jqe.2022.3145840
摘要
In this study, a nano-displacement measurement system is proposed and demonstrated both theoretically and experimentally, which was based on a modified Mach-Zehnder (M-Z) interferometer using two conjugated orbital angular momentum (OAM) beams. In contrast to the previous M-Z-based OAM interferometer, a reflection module is inserted into the reference arm instead of a simple mirror. As a result, the effect of the transverse position-dependence phase-shift caused by the dove prism can be clearly eliminated and a stable and robust (off-axis insensitive) petal-like interference pattern can be obtained successfully. More importantly, a significant rotation angle of the petal-like pattern vs. the tiny displacement of the tested object can be clearly observed. In accordance with the modified measurement setup, a novel phase-demodulation method enabling to quickly and accurately characterize the rotation angle of the petal-like interference-patterns is proposed and demonstrated also. A tiny displacement ranging from 50 to 800 nm with resolution of $\sim 50$ pm has been measured successfully. The proposed approach may find applications in not only the ultra-high precision displacement sensor, but also the temperature, strain, and refractive index sensors.
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