arXiv Open Access 2023

Dynamical mean-field driven spinor condensate physics beyond the single-mode approximation

J. Jie S. Zhong Q. Zhang I. Morgenstern H. G. Ooi +5 lainnya
Lihat Sumber

Abstrak

$^{23}$Na spin-1 Bose-Einstein condensates are used to experimentally demonstrate that mean-field physics beyond the single-mode approximation can be relevant during the non-equilibrium dynamics. The experimentally observed spin oscillation dynamics and associated dynamical spatial structure formation confirm theoretical predictions that are derived by solving a set of coupled mean-field Gross-Pitaevskii equations [J. Jie et al., Phys. Rev. A 102, 023324 (2020)]. The experiments rely on microwave dressing of the $f=1$ hyperfine states, where $f$ denotes the total angular momentum of the $^{23}$Na atom. The fact that beyond single-mode approximation physics at the mean-field level, i.e., spatial mean-field dynamics that distinguishes the spatial density profiles associated with different Zeeman levels, can -- in certain parameter regimes -- have a pronounced effect on the dynamics when the spin healing length is comparable to or larger than the size of the Bose-Einstein condensate has implications for using Bose-Einstein condensates as models for quantum phase transitions and spin squeezing studies as well as for non-linear SU(1,1) interferometers.

Topik & Kata Kunci

Penulis (10)

J

J. Jie

S

S. Zhong

Q

Q. Zhang

I

I. Morgenstern

H

H. G. Ooi

Q

Q. Guan

A

A. Bhagat

D

D. Nematollahi

A

A. Schwettmann

D

D. Blume

Format Sitasi

Jie, J., Zhong, S., Zhang, Q., Morgenstern, I., Ooi, H.G., Guan, Q. et al. (2023). Dynamical mean-field driven spinor condensate physics beyond the single-mode approximation. https://arxiv.org/abs/2301.06461

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Tahun Terbit
2023
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en
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arXiv
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Open Access ✓