Measurement of total phase fluctuation in cold-atomic quantum simulators

Fuente: arXiv
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Main Authors: Murtadho, Taufiq, Cataldini, Federica, Erne, Sebastian, Gluza, Marek, Tajik, Mohammadamin, Schmiedmayer, Jörg, Ng, Nelly H. Y.
Format: Preprint
Published: 2024
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author Murtadho, Taufiq
Cataldini, Federica
Erne, Sebastian
Gluza, Marek
Tajik, Mohammadamin
Schmiedmayer, Jörg
Ng, Nelly H. Y.
author_facet Murtadho, Taufiq
Cataldini, Federica
Erne, Sebastian
Gluza, Marek
Tajik, Mohammadamin
Schmiedmayer, Jörg
Ng, Nelly H. Y.
contents Studying the dynamics of quantum many-body systems is often constrained by the limitations in probing relevant observables, especially in continuous systems. A powerful method to gain information about such systems is the reconstruction of local currents from the continuity equation. We show that this approach can be used to extract the total phase fluctuation of adjacent Bose gases. We validate our technique numerically and demonstrate its effectiveness by analyzing data from selected experiments simulating 1D quantum field theories through the phase difference of two parallel 1D Bose gases. This analysis reveals the previously hidden sector of the sum mode of the phase, which is important for studying long-time thermalization and out-of-equilibrium dynamics of the system. Our method is general and can be applied to other cold atom systems with spatial phase gradients, thereby expanding the scope and capabilities of cold-atomic quantum simulators.
format Preprint
id arxiv_https___arxiv_org_abs_2408_03736
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Measurement of total phase fluctuation in cold-atomic quantum simulators
Murtadho, Taufiq
Cataldini, Federica
Erne, Sebastian
Gluza, Marek
Tajik, Mohammadamin
Schmiedmayer, Jörg
Ng, Nelly H. Y.
Quantum Gases
Quantum Physics
Studying the dynamics of quantum many-body systems is often constrained by the limitations in probing relevant observables, especially in continuous systems. A powerful method to gain information about such systems is the reconstruction of local currents from the continuity equation. We show that this approach can be used to extract the total phase fluctuation of adjacent Bose gases. We validate our technique numerically and demonstrate its effectiveness by analyzing data from selected experiments simulating 1D quantum field theories through the phase difference of two parallel 1D Bose gases. This analysis reveals the previously hidden sector of the sum mode of the phase, which is important for studying long-time thermalization and out-of-equilibrium dynamics of the system. Our method is general and can be applied to other cold atom systems with spatial phase gradients, thereby expanding the scope and capabilities of cold-atomic quantum simulators.
title Measurement of total phase fluctuation in cold-atomic quantum simulators
topic Quantum Gases
Quantum Physics
url https://arxiv.org/abs/2408.03736