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March 3, 2026Micromachines0 citationsOpen Access

High-Extinction-Ratio Chiral Mid-Wave Infrared Photodetector Using Trapezoidal Si Pillars

YZYingsong ZhengLLLongfeng LvYZY L Zou

Key Points

  • Achieving an extinction ratio of 31 dB enables effective discrimination between left and right circularly polarized light.
  • The innovative use of trapezoidal silicon pillars allows for precise geometric displacement and tilt angle adjustments.
  • Numerical simulations illustrate unique transmission spectral responses based on polarization states in chiral metasurfaces.
  • This finding could advance developments in on-chip polarization detection and integrated sensing technologies.

Abstract

Although the polarization state, as a key physical dimension of light, plays an irreplaceable role in many frontier fields such as quantum communication and chiral sensing, traditional photodetectors are limited by the inherent optical isotropy of materials and thus are unable to directly distinguish circular polarization information. This paper numerically reports a miniature circular polarization photodetector based on chiral metasurfaces, which achieves an excellent extinction ratio of up to 31 dB through the collaborative regulation of geometric displacement manipulation and tilt angle operation. This device utilizes the symmetry-breaking effect to construct significantly different transmission spectral responses between left circularly polarized light (LCP) and right circularly polarized light (RCP). Our research not only provides a high-performance implementation solution for on-chip polarization detection but also opens up new paths for the future development of quantum optics, integrated sensing, and ultra-compact polarization optical systems.

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Cite This Study

Zheng et al. (2026) studied this question.

synapsesocial.com/papers/69a75bb6c6e9836116a238cfhttps://doi.org/10.3390/mi17020181
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