Quantum Interference Amplifies Weak Chirality into Giant Quantum Nonreciprocity

Fuente: arXiv
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Main Authors: Tang, Jing, Deng, Yuangang
Format: Preprint
Published: 2026
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author Tang, Jing
Deng, Yuangang
author_facet Tang, Jing
Deng, Yuangang
contents Quantum nonreciprocity at few-photon level typically requires strong symmetry breaking, posing significant experimental challenges. Here we demonstrate that phase-controlled quantum interference can amplify weak chirality into giant quantum nonreciprocity. We consider two phase-programmable atoms coupled to a spinning whispering-gallery-mode resonator, where interference dramatically amplifies the effect of weak Fizeau splitting. This mechanism generates pronounced directional asymmetry in photon statistics, featuring bright antibunched emission in one direction and strongly bunched emission in the opposite direction. Remarkably, both correlation and brightness isolations obey phase-controlled power-law scaling with Fizeau splitting, reaching up to 65~dB and 17.3~dB, respectively. Our results establish interference-enhanced weak chirality as a powerful route toward directional nonclassical light sources.
format Preprint
id arxiv_https___arxiv_org_abs_2605_27447
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Quantum Interference Amplifies Weak Chirality into Giant Quantum Nonreciprocity
Tang, Jing
Deng, Yuangang
Quantum Physics
Quantum Gases
Quantum nonreciprocity at few-photon level typically requires strong symmetry breaking, posing significant experimental challenges. Here we demonstrate that phase-controlled quantum interference can amplify weak chirality into giant quantum nonreciprocity. We consider two phase-programmable atoms coupled to a spinning whispering-gallery-mode resonator, where interference dramatically amplifies the effect of weak Fizeau splitting. This mechanism generates pronounced directional asymmetry in photon statistics, featuring bright antibunched emission in one direction and strongly bunched emission in the opposite direction. Remarkably, both correlation and brightness isolations obey phase-controlled power-law scaling with Fizeau splitting, reaching up to 65~dB and 17.3~dB, respectively. Our results establish interference-enhanced weak chirality as a powerful route toward directional nonclassical light sources.
title Quantum Interference Amplifies Weak Chirality into Giant Quantum Nonreciprocity
topic Quantum Physics
Quantum Gases
url https://arxiv.org/abs/2605.27447