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Main Authors: Li, Qing, Shao, Shi-Yao, Zhang, Li-Hua, Liu, Bang, Zhang, Zheng-Yuan, Zhang, Jun, Wang, Qi-Feng, Chen, Han-Chao, Ma, Yu, Han, Tian-Yu, Ding, Dong-Sheng, Shi, Bao-Sen
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2501.09282
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author Li, Qing
Shao, Shi-Yao
Zhang, Li-Hua
Liu, Bang
Zhang, Zheng-Yuan
Zhang, Jun
Wang, Qi-Feng
Chen, Han-Chao
Ma, Yu
Han, Tian-Yu
Ding, Dong-Sheng
Shi, Bao-Sen
author_facet Li, Qing
Shao, Shi-Yao
Zhang, Li-Hua
Liu, Bang
Zhang, Zheng-Yuan
Zhang, Jun
Wang, Qi-Feng
Chen, Han-Chao
Ma, Yu
Han, Tian-Yu
Ding, Dong-Sheng
Shi, Bao-Sen
contents Ultra-long-range Rydberg molecules (ULRMs) have attracted significant interest due to their unique electronic properties and potential applications in quantum technologies. We theoretically investigate the formation and characteristics of heteronuclear ULRMs, focusing on Rb-Cs systems. We explore the vibrational energy levels of heteronuclear nD ULRMs and compare them with homonuclear counterparts. We also predict the formation of polyatomic heteronuclear ULRMs, discussing how the binding energy and spectral features evolve as the number of ground-state atoms increases. Our theoretical predictions are presented in terms of molecular spectra and provide insight into the formation dynamics of these systems. The study further explores the potential applications of heteronuclear ULRMs in quantum information processing, quantum simulation, and precision measurements, offering new avenues for future research in many-body physics and quantum technologies.
format Preprint
id arxiv_https___arxiv_org_abs_2501_09282
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Diatomic and Polyatomic Heteronuclear Ultralong-Range Rydberg Molecules
Li, Qing
Shao, Shi-Yao
Zhang, Li-Hua
Liu, Bang
Zhang, Zheng-Yuan
Zhang, Jun
Wang, Qi-Feng
Chen, Han-Chao
Ma, Yu
Han, Tian-Yu
Ding, Dong-Sheng
Shi, Bao-Sen
Quantum Physics
Ultra-long-range Rydberg molecules (ULRMs) have attracted significant interest due to their unique electronic properties and potential applications in quantum technologies. We theoretically investigate the formation and characteristics of heteronuclear ULRMs, focusing on Rb-Cs systems. We explore the vibrational energy levels of heteronuclear nD ULRMs and compare them with homonuclear counterparts. We also predict the formation of polyatomic heteronuclear ULRMs, discussing how the binding energy and spectral features evolve as the number of ground-state atoms increases. Our theoretical predictions are presented in terms of molecular spectra and provide insight into the formation dynamics of these systems. The study further explores the potential applications of heteronuclear ULRMs in quantum information processing, quantum simulation, and precision measurements, offering new avenues for future research in many-body physics and quantum technologies.
title Diatomic and Polyatomic Heteronuclear Ultralong-Range Rydberg Molecules
topic Quantum Physics
url https://arxiv.org/abs/2501.09282