Direct measurement of Tan's contact in a one-dimensional Lieb-Liniger gas

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Huang, Qi, Yao, Hepeng, Chen, Xuzong, Sanchez-Palencia, Laurent
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909425254531072
author Huang, Qi
Yao, Hepeng
Chen, Xuzong
Sanchez-Palencia, Laurent
author_facet Huang, Qi
Yao, Hepeng
Chen, Xuzong
Sanchez-Palencia, Laurent
contents The Tan contact has emerged as a pivotal quantity in characterizing many-body quantum systems, bridging microscopic short-range correlations to thermodynamic behavior. It is defined as the weight of universal $1/k^4$ fall off in momentum distribution tails, which can be measured directly in ultracold gases. So far, however, its direct measurement has been hindered in Bose gases due to interactions strongly affecting the expansion dynamics. Here, we present the first direct measurement of the Tan contact in a strongly-correlated Lieb-Liniger gas. Leveraging the one-dimensional geometry of our system, we implement a two-stage expansion scheme, yielding interaction-immune time-of-flight imaging. Our results show excellent agreement with theoretical predictions from quantum Monte Carlo calculations, which also provides independent thermometry of the experiment. By varying atom number, temperature, and interaction strength, we obtain results consistent with the universal scaling law predicted for the trapped Lieb-Liniger model. Our work paves the way for further characterization of the Lieb-Liniger gas across broad interaction regimes and holds promise for extension to other correlated quantum gases in confined geometries.
format Preprint
id arxiv_https___arxiv_org_abs_2412_08775
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Direct measurement of Tan's contact in a one-dimensional Lieb-Liniger gas
Huang, Qi
Yao, Hepeng
Chen, Xuzong
Sanchez-Palencia, Laurent
Quantum Gases
Atomic Physics
Quantum Physics
The Tan contact has emerged as a pivotal quantity in characterizing many-body quantum systems, bridging microscopic short-range correlations to thermodynamic behavior. It is defined as the weight of universal $1/k^4$ fall off in momentum distribution tails, which can be measured directly in ultracold gases. So far, however, its direct measurement has been hindered in Bose gases due to interactions strongly affecting the expansion dynamics. Here, we present the first direct measurement of the Tan contact in a strongly-correlated Lieb-Liniger gas. Leveraging the one-dimensional geometry of our system, we implement a two-stage expansion scheme, yielding interaction-immune time-of-flight imaging. Our results show excellent agreement with theoretical predictions from quantum Monte Carlo calculations, which also provides independent thermometry of the experiment. By varying atom number, temperature, and interaction strength, we obtain results consistent with the universal scaling law predicted for the trapped Lieb-Liniger model. Our work paves the way for further characterization of the Lieb-Liniger gas across broad interaction regimes and holds promise for extension to other correlated quantum gases in confined geometries.
title Direct measurement of Tan's contact in a one-dimensional Lieb-Liniger gas
topic Quantum Gases
Atomic Physics
Quantum Physics
url https://arxiv.org/abs/2412.08775