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Trapped Ion Quantum Computing Quantum Simulation

Superresolution technique beyond the diffraction limit under a structured beam via different optical nanostructures

arXiv
Authors: Subhankar Roy, Jianping Hu, M Ummal Momeen

Year

2026

Paper ID

12094

Status

Preprint

Abstract Read

~2 min

Abstract Words

137

Citations

N/A

Abstract

To overcome the limit of diffraction while achieving the superresolution technique, solid immersion lenses are the key optical elements for data storage and nanophotonics applications. Recent demonstrations have shown how different nanostructures (such as elliptical SILs) are used in diverse fields of increasing resolution in the presence of a structured Gaussian beam. By applying twisted beams such as angular momentum beams (Laguerre- Gaussian) and spatial higher-order Gaussian beams (Hermite- Gauss), we can attain a sharp FWHM = 27 nm near-field focal spot pattern, which is considerably better than the conventional macroscopic SIL. By numerical simulations, tolerance has been confirmed with a slight variation in beam size and geometrical modification to make the model compatible with fabrication errors. This narrow bandwidth intensity distribution can be utilized for scanning the sample with higher resolution, especially in the field of quantum technology.

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  • This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
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  • To overcome the limit of diffraction while achieving the superresolution technique, solid immersion lenses are the key optical elements for data storage and nanophotonics...

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