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使用固体浸没透镜对单个磁通量量子进行高分辨率光学成像。

High-resolution optical imaging of single magnetic flux quanta with a solid immersion lens.

作者信息

Thakur Siddharatha, Tamarat Philippe, Rochet Antonine, Birk Joschka, Veshchunov Ivan S, Bezard Malo, Buzdin Alexander I, Trebbia Jean-Baptiste, Lounis Brahim

出版信息

Opt Express. 2023 Jul 17;31(15):24194-24202. doi: 10.1364/OE.494474.

Abstract

Magneto-optical imaging of quantized magnetic flux tubes in superconductors - Abrikosov vortices - is based on Faraday rotation of light polarization within a magneto-optical indicator placed on top of the superconductor. Due to severe aberrations induced by the thick indicator substrate, the spatial resolution of vortices is usually well beyond the optical diffraction limit. Using a high refractive index solid immersion lens placed onto the indicator garnet substrate, we demonstrate wide field optical imaging of single flux quanta in a Niobium film with a resolution better than 600 nm and sub-second acquisition periods, paving the way to high-precision and fast vortex manipulation. Vectorial field simulations are also performed to reproduce and optimize the experimental features of vortex images.

摘要

超导体中量子化磁通量管(阿布里科索夫涡旋)的磁光成像基于放置在超导体顶部的磁光指示器内光偏振的法拉第旋转。由于厚指示器基板引起的严重像差,涡旋的空间分辨率通常远超出光学衍射极限。通过在指示器石榴石基板上放置高折射率固体浸没透镜,我们展示了在铌膜中对单个磁通量子的宽场光学成像,分辨率优于600纳米且采集周期不到一秒,为高精度和快速涡旋操控铺平了道路。还进行了矢量场模拟以再现和优化涡旋图像的实验特征。

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