Semantic Scholar Open Access 2019 125 sitasi

Domain-wall confinement and dynamics in a quantum simulator

W. L. Tan P. Becker F. Liu G. Pagano K. Collins +9 lainnya

Abstrak

Particles subject to confinement experience an attractive potential that increases without bound as they separate. A prominent example is colour confinement in particle physics, in which baryons and mesons are produced by quark confinement. Confinement can also occur in low-energy quantum many-body systems when elementary excitations are confined into bound quasiparticles. Here we report the observation of magnetic domain-wall confinement in interacting spin chains with a trapped-ion quantum simulator. By measuring how correlations spread, we show that confinement can suppress information propagation and thermalization in such many-body systems. We quantitatively determine the excitation energy of domain-wall bound states from the non-equilibrium quench dynamics. We also study the number of domain-wall excitations created for different quench parameters, in a regime that is difficult to model with classical computers. This work demonstrates the capability of quantum simulators for investigating high-energy physics phenomena, such as quark collision and string breaking. Long-range Ising interactions present in one-dimensional spin chains can induce a confining potential between pairs of domain walls, slowing down the thermalization of the system. This has now been observed in a trapped-ion quantum simulator.

Topik & Kata Kunci

Penulis (14)

W

W. L. Tan

P

P. Becker

F

F. Liu

G

G. Pagano

K

K. Collins

A

A. De

L

Lei Feng

H

H. Kaplan

A

A. Kyprianidis

R

Rex Lundgren

W

W. Morong

S

Seth Whitsitt

A

A. Gorshkov

C

C. Monroe

Format Sitasi

Tan, W.L., Becker, P., Liu, F., Pagano, G., Collins, K., De, A. et al. (2019). Domain-wall confinement and dynamics in a quantum simulator. https://doi.org/10.1038/s41567-021-01194-3

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Informasi Jurnal
Tahun Terbit
2019
Bahasa
en
Total Sitasi
125×
Sumber Database
Semantic Scholar
DOI
10.1038/s41567-021-01194-3
Akses
Open Access ✓