Observation of modulation-induced Feshbach resonance

Fuente: arXiv
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Main Authors: Wang, Tongkang, Liu, Yuqi, Wang, Jundong, Huang, Youjia, Chen, Wenlan, Zhang, Zhendong, Hu, Jiazhong
Format: Preprint
Published: 2025
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author Wang, Tongkang
Liu, Yuqi
Wang, Jundong
Huang, Youjia
Chen, Wenlan
Zhang, Zhendong
Hu, Jiazhong
author_facet Wang, Tongkang
Liu, Yuqi
Wang, Jundong
Huang, Youjia
Chen, Wenlan
Zhang, Zhendong
Hu, Jiazhong
contents In this work, we observe a novel resonant mechanism, namely the modulation-induced Feshbach resonance. By applying a far-detuned laser to the cesium D2 transition with intensity modulation, we periodically shake the energy levels of atomic collisional states. This periodic shaking connects the free-scattering states to shallow molecular states. At specific frequencies, we observe significant atom loss, which corresponds to the resonant coupling between these two types of states. This precisely corresponds to a form of Feshbach resonance, yet in the frequency domain rather than the magnetic-field domain. Using this method, we can directly scan the energy spectrum of molecular bound states without synthesizing any molecules. In addition to these bound states, we can also probe the molecular states embedded in the continuum, which are typically very difficult to detect by the conventional methods based on molecular synthesis. Moreover, by using a far-detuned laser instead of a magnetic field coil, it enables spatially dependent control over atomic interactions, coupling multiple levels simultaneously, and inducing new Feshbach resonances for those atoms that do not have conventional magnetic resonances. Therefore, we believe that this new resonant mechanism offers new opportunities for controlling atomic and molecular interactions in quantum simulations.
format Preprint
id arxiv_https___arxiv_org_abs_2505_06871
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Observation of modulation-induced Feshbach resonance
Wang, Tongkang
Liu, Yuqi
Wang, Jundong
Huang, Youjia
Chen, Wenlan
Zhang, Zhendong
Hu, Jiazhong
Quantum Physics
Atomic and Molecular Clusters
Atomic Physics
In this work, we observe a novel resonant mechanism, namely the modulation-induced Feshbach resonance. By applying a far-detuned laser to the cesium D2 transition with intensity modulation, we periodically shake the energy levels of atomic collisional states. This periodic shaking connects the free-scattering states to shallow molecular states. At specific frequencies, we observe significant atom loss, which corresponds to the resonant coupling between these two types of states. This precisely corresponds to a form of Feshbach resonance, yet in the frequency domain rather than the magnetic-field domain. Using this method, we can directly scan the energy spectrum of molecular bound states without synthesizing any molecules. In addition to these bound states, we can also probe the molecular states embedded in the continuum, which are typically very difficult to detect by the conventional methods based on molecular synthesis. Moreover, by using a far-detuned laser instead of a magnetic field coil, it enables spatially dependent control over atomic interactions, coupling multiple levels simultaneously, and inducing new Feshbach resonances for those atoms that do not have conventional magnetic resonances. Therefore, we believe that this new resonant mechanism offers new opportunities for controlling atomic and molecular interactions in quantum simulations.
title Observation of modulation-induced Feshbach resonance
topic Quantum Physics
Atomic and Molecular Clusters
Atomic Physics
url https://arxiv.org/abs/2505.06871