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Metasurface enables compact and high-sensitivity atomic magnetometer

09.15.25 | Chinese Society for Optical Engineering

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The powerful light field manipulation capability of metasurfaces offers a novel development perspective for the quantum precision measurement. By applying the phase-gradient metasurface (PGM) to atomic magnetometers (AMs), we have proposed and experimentally demonstrated a new type of compact single-beam elliptically polarized atomic magnetometers (EPAMs). Employing the fabricated chiral beam splitter PGM with high cross-polarization transmittance, a new atomic spin chirality detection method was devised, enabling the ultra-high sensitivity for extremely weak magnetic field measurement and achieving a high sensitivity of 2.67 pT/Hz 1/2 under an external magnetic field of approximately 10000 nT. The new AMs combine the pumping and probing polarized light, achieving a compact design. The fabricated PGM has a size of only 3 mm × 3 mm × 0.7 mm, which is beneficial for the miniaturization and integration of AMs. This work effectively expands the application of metasurfaces in the field of quantum precision measurement, and also provides a new viewpoint for the design and development of high-sensitivity and miniaturized AMs.

PhotoniX

10.1186/s43074-025-00189-0

Experimental study

Phase-Gradient Metasurface Enables Atomic Spin Chirality Detection for Elliptically Polarized Laser-Pumped Atomic Magnetometer

2-Sep-2025

The authors declare no completing interests.

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Fangfang Cai
Chinese Society for Optical Engineering
cai_ff@csoe.org.cn

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How to Cite This Article

APA:
Chinese Society for Optical Engineering. (2025, September 15). Metasurface enables compact and high-sensitivity atomic magnetometer. Brightsurf News. https://www.brightsurf.com/news/L59XX0R8/metasurface-enables-compact-and-high-sensitivity-atomic-magnetometer.html
MLA:
"Metasurface enables compact and high-sensitivity atomic magnetometer." Brightsurf News, Sep. 15 2025, https://www.brightsurf.com/news/L59XX0R8/metasurface-enables-compact-and-high-sensitivity-atomic-magnetometer.html.