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Updated: May 27, 2026

Implementation of a Reference Interferometer for Nanodetection
Published on: April 26, 2014
Design of a birefringent Michelson interferometer-based interleaver with ultra-low dispersion and low cost
Haocheng Hu1, Baozhong Zheng, Qingming Liu
1Photop Technologies, INC (a subsidiary of II-VI Incorporated), 12 Houyu Road, Fuzhou, Fujian 350014, China.
Abstract:
We design and demonstrate a birefringent Michelson interferometer based interleaver with ultra-low dispersion and low cost. The interleaver consists of polarizing beam splitters (PBS's) and quarter-wave plates and half-wave plates. The PBS's based Michelson interferometers provide the optical path difference for interference between the two orthogonal polarization components and the half-wave plates provide the birefringent needed to minimize ripple of output. The designed interleaver with two-stage interferometer in a 50 GHz channel spacing application exhibits a 0.5 dB passband and a 25 dB stopband both 27 GHz; a channel isolation higher than 35 dB and chromatic dispersion less than ±5 ps/nm within 0.5 dB passband; 1.3 dB insertion loss and 0.3 dB PDL; 0.04 GHz/°C thermal stability. Since all of the optical components can be optically bonded together, the device is robust and easy to be aligned, which reduces labor cost.

