English

Chip-scale Full-Stokes Spectropolarimeter in Silicon Photonic Circuits

Optics 2020-02-07 v1 Applied Physics Quantum Physics

Abstract

Wavelength-dependent polarization state of light carries crucial information about light-matter interactions. However, its measurement is limited to bulky, energy-consuming devices, which prohibits many modern, portable applications. Here, we propose and demonstrate a chip-scale spectropolarimeter implemented using a CMOS-compatible silicon photonics technology. Four compact Vernier microresonator spectrometers are monolithically integrated with a broadband polarimeter consisting of a 2D nanophotonic antenna and a polarimetric circuit to achieve full-Stokes spectropolarimetric analysis. The proposed device offers a solid-state spectropolarimetry solution with a small footprint of 1*0.6 mm2 and low power consumption of 360 mW}. Full-Stokes spectral detection across a broad spectral range of 50 nm with a resolution of 1~nm is demonstrated in characterizing a material possessing structural chirality. The proposed device may enable a broader application of spectropolarimetry in the fields ranging from biomedical diagnostics and chemical analysis to observational astronomy.

Keywords

Cite

@article{arxiv.2002.02062,
  title  = {Chip-scale Full-Stokes Spectropolarimeter in Silicon Photonic Circuits},
  author = {Zhongjin Lin and Tigran Dadalyan and Simon Bélanger-de Villers and Tigran Galstian and Wei Shi},
  journal= {arXiv preprint arXiv:2002.02062},
  year   = {2020}
}

Comments

14 pages, 12 figures, uses jabbrv.sty

R2 v1 2026-06-23T13:32:35.053Z