Supersonic Flow Past an Obstacle in a Quasi-Two-Dimensional Lee-Huang-Yang Quantum Fluid

Fuente: arXiv
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Main Authors: Santos, G. H. dos, de Brito, L. F. Calazans, Gammal, A., Kamchatnov, A. M.
Format: Preprint
Published: 2025
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author Santos, G. H. dos
de Brito, L. F. Calazans
Gammal, A.
Kamchatnov, A. M.
author_facet Santos, G. H. dos
de Brito, L. F. Calazans
Gammal, A.
Kamchatnov, A. M.
contents A supersonic flow past an obstacle can generate a rich variety of wave excitations. This paper investigates, both analytically and numerically, two types of excitations generated by the flow of a Lee-Huang-Yang quantum fluid past an obstacle: linear radiation and oblique dark solitons. We show that wave crests of linear radiation can be accurately described by the proper modification of the Kelvin original theory, while the oblique dark soliton solution is obtained analytically by transformation of the 1D soliton solution to the obstacle's reference frame. A comparison between analytical predictions and numerical simulations demonstrates good agreement, validating our theoretical approach.
format Preprint
id arxiv_https___arxiv_org_abs_2505_06736
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Supersonic Flow Past an Obstacle in a Quasi-Two-Dimensional Lee-Huang-Yang Quantum Fluid
Santos, G. H. dos
de Brito, L. F. Calazans
Gammal, A.
Kamchatnov, A. M.
Quantum Gases
Pattern Formation and Solitons
A supersonic flow past an obstacle can generate a rich variety of wave excitations. This paper investigates, both analytically and numerically, two types of excitations generated by the flow of a Lee-Huang-Yang quantum fluid past an obstacle: linear radiation and oblique dark solitons. We show that wave crests of linear radiation can be accurately described by the proper modification of the Kelvin original theory, while the oblique dark soliton solution is obtained analytically by transformation of the 1D soliton solution to the obstacle's reference frame. A comparison between analytical predictions and numerical simulations demonstrates good agreement, validating our theoretical approach.
title Supersonic Flow Past an Obstacle in a Quasi-Two-Dimensional Lee-Huang-Yang Quantum Fluid
topic Quantum Gases
Pattern Formation and Solitons
url https://arxiv.org/abs/2505.06736