hide

首页 / 封面设计

Directional imbalance of Bloch surface waves for ultrasensitive displacement metrology

Ruxue Wang

封面设计 | First Published: 2021-07-07

Precise position sensing and nanoscale optical rulers are important in many applications in nanometrology, gravitational wave detection and quantum technologies. Several implementations of such nanoscale displacement sensors have been recently developed based on interferometers, nanoantennas, optical field singularities and optical skyrmions. Here, we propose a method for ultrasensitive displacement measurements based on the directional imbalance of the excitation of Bloch surface waves by an asymmetric double slit, which have low propagation loss and provide high detected intensity. The directionality of excitation changes dramatically with a sub-nanometric displacement of the illuminating Gaussian beam across the slit and can be used for displacement and refractive index metrology. We demonstrate a theoretical intensity ratio of the BSW excitation in opposite directions exceeding 890, which provides a displacement sensitivity of up to 2.888 nm−1 with a resolution below 0.5 nm over a 100 nm linearity range. Experimentally, a directional intensity ratio more than 90 has been achieved, with a displacement sensitivity of 0.122 nm−1 over a 300 nm linearity range, resulting in a resolution below 8 nm for a 600 nm illumination wavelength. The proposed facile configuration may have potential applications in nanometrology and super-resolution microscopy.

原文链接

https://pubs.rsc.org/en/content/articlelanding/2021/nr/d1nr01251g#!divAbstract

回到顶部

联系我们

  • 地址

    辽宁省沈阳市铁西区北一西路52甲号830-06

  • 热线电话

    13236639606 或 18809875865

  • QQ

    客服1:1114371869 客服2:2501950479 客服3:1114371777 客服4:2841761885

官方分享

辽公网安备21010602000232号

copyright © 2016 沈阳智研科技有限公司 版权所有网站建

沈阳网站建设:龙兴科技