logo
Loading...
Laser manufacturing of spatial resolution approaching quantum limit

Physics

Laser manufacturing of spatial resolution approaching quantum limit

X. Wang, H. Fang, et al.

This innovative research by Xiao-Jie Wang, Hong-Hua Fang, Zhen-Ze Li, Dan Wang, and Hong-Bo Sun unveils a groundbreaking method achieving spatial resolution nearing the quantum limit, enabling feature sizes under 5 nm. The approach enhances colour centre creation in hexagonal boron nitride, ensuring deterministic and monochromatic emission, paving the way for enhanced integrated quantum applications.... show more
Abstract
Atomic and close-to-atom scale manufacturing is a promising avenue toward single-photon emitters, single-electron transistors, single-atom memory, and quantum-bit devices for future communication, computation, and sensing applications. Laser manufacturing is outstanding to this end for ease of beam manipulation, batch production, and no requirement for photomasks. It is, however, suffering from optical diffraction limits. Herein, we report a spatial resolution improved to the quantum limit by exploiting a threshold tracing and lock-in method, whereby the two-order gap between atomic point defect complexes and optical diffraction limit is surpassed, and a feature size of <5 nm is realized. The underlying physics is that the uncertainty of local atom thermal motion dominates electron excitation, rather than the power density slope of the incident laser. We show that the colour centre yield in hexagonal boron nitride is transformed from stochastic to deterministic, and the emission from individual sites becomes polychromatic to monochromatic. As a result, single colour centres in the regular array are deterministically created with a unity yield and high positional accuracy, serving as a step forward for integrated quantum technological applications.
Publisher
Light: Science & Applications
Published On
Jan 01, 2024
Authors
Xiao-Jie Wang, Hong-Hua Fang, Zhen-Ze Li, Dan Wang, Hong-Bo Sun
Tags
quantum technologies
spatial resolution
optical diffraction
hexagonal boron nitride
deterministic emission
single colour centres
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 22+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny