Quantum simulation of hadronic states with Rydberg-dressed atoms
Description
The phenomenon of confinement is well known in high-energy physics and can also be realized for low-energy domain-wall excitations in one-dimensional quantum spin chains. A bound state consisting of two domain walls can behave like a meson, and recently, Vovrosh et al. [PRX Quantum 3, 040309 (2022)] demonstrated that a pair of mesons could dynamically form a metastable confinement-induced bound state (consisting of four domain walls) akin to a hadronic state. However, the protocol discussed by Vovrosh et al. involving the use of interactions with characteristically nonmonotonic distance dependence is not easy to come by in nature, thus posing a challenge for its experimental realization. In this regard, Rydberg atoms can provide the required platform for simulating confinement-related physics. We exploit the flexibility offered by interacting Rydberg-dressed atoms to engineering modified spin-spin interactions for the one-dimensional transverse-field Ising model. Our numerical simulations show how Rydberg-dressed interactions can give rise to a variety of effective potentials that are suitable for hadron formation, which opens the possibility of simulating confinement physics with Rydberg platforms as a viable alternative to current trapped-ion experiments.
Files
10.1103_PhysRevA.109.032613.pdf
Files
(1.8 MB)
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Additional details
Identifiers
- DOI
- 10.1103/PhysRevA.109.032613;
- arXiv
- arXiv:2304.12623;
- Crossref Funder ID
- 10.13039/100014553;
Publishing Information
- Journal Title
- Physical Review A
- Journal Volume
- 109
- Journal Issue
- 3
- Journal Page Range
- 11 pgs.
- ISSN
- 1094-1622
INIS
- Country of Publication
- United States
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- Subject category
- S74: ATOMIC AND MOLECULAR PHYSICS; S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
- Descriptors DEI
- ATOMS; BOUND STATE; COMPUTERIZED SIMULATION; CONFINEMENT; DISTANCE; EXCITATION; FLEXIBILITY; INTERACTIONS; IONS; MESONS; METASTABLE STATES; POTENTIALS; QUANTUM INFORMATION; RYDBERG STATES; SPIN
- Descriptors DEC
- ANGULAR MOMENTUM; BOSONS; CHARGED PARTICLES; ELEMENTARY PARTICLES; ENERGY LEVELS; ENERGY-LEVEL TRANSITIONS; EXCITED STATES; HADRONS; INFORMATION; MECHANICAL PROPERTIES; PARTICLE PROPERTIES; SIMULATION; TENSILE PROPERTIES
Optional Information
- Notes
- Contact Email: zihan.wang18@imperial.ac.uk; Contact Email: rick.mukherjee@physnet.uni-hamburg.de; Record automatically processed
- Funding organization
- Samsung Advanced Institute of Technology; Hightech Agenda Bayern Plus