English

Quantum entanglement enabled ellipsometer for phase retardance measurement

Quantum Physics 2024-02-28 v1 Optics

Abstract

An ellipsometer is a vital precision tool used for measuring optical parameters with wide applications in many fields, including accurate measurements in film thickness, optical constants, structural profiles, etc. However, the precise measurement of photosensitive materials meets huge obstacles because of the excessive input photons, therefore the requirement of enhancing detection accuracy under low incident light intensity is an essential topic in the precision measurement. In this work, by combining a polarization-entangled photon source with a classical transmission-type ellipsometer, the quantum ellipsometer with the PSA (Polarizer-Sample-Analyzer) and the Senarmount method is constructed firstly to measure the phase retardation of the birefringent materials. The experimental results show that the accuracy can reach to nanometer scale at extremely low input intensity, and the stability are within 1% for all specimens tested with a compensator involved. Our work paves the way for precision measurement at low incident light intensity, with potential applications in measuring photosensitive materials, active-biological samples and other remote monitoring scenarios.

Keywords

Cite

@article{arxiv.2402.17401,
  title  = {Quantum entanglement enabled ellipsometer for phase retardance measurement},
  author = {Meng-Yu Xie and Su-Jian Niu and Yin-Hai Li and Zheng Ge and Ming-Yuan Gao and Zhao-Qi-Zhi Han and Ren-Hui Chen and Zhi-Yuan Zhou and Bao-Sen Shi},
  journal= {arXiv preprint arXiv:2402.17401},
  year   = {2024}
}

Comments

13 pages, 5 figures. This work has been submitted for possible publication

R2 v1 2026-06-28T15:01:46.041Z