User-friendly TWA for dissipative spin dynamics

Fuente: arXiv
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Main Authors: Hosseinabadi, Hossein, Chelpanova, Oksana, Marino, Jamir
Format: Preprint
Published: 2025
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author Hosseinabadi, Hossein
Chelpanova, Oksana
Marino, Jamir
author_facet Hosseinabadi, Hossein
Chelpanova, Oksana
Marino, Jamir
contents We put forward a user-friendly framework of the truncated Wigner approximation (TWA) for dissipative quantum many-body systems. Our approach is computationally affordable and it features a straightforward implementation. The leverage of the method can be ultimately traced to an intimate connection between the TWA and the semi-classical limit of the quantum Langevin equation, which we unveil by resorting to a path integral representation of the Lindbladian. Our approach allows us to explore dynamics from early to late times in a variety of models at the core of modern AMO research, including lasing, central spin models, driven arrays of Rydbergs and correlated emission in free space. Notably, our TWA approach outperforms the cumulant expansion method in certain models and performs comparably well in others, all while offering significantly lower computational costs and a much simpler formulation of the dynamical equations. We therefore argue that TWA could become in the near future a primary tool for a fast and efficient first exploration of driven-dissipative many-body dynamics on consumer grade computers.
format Preprint
id arxiv_https___arxiv_org_abs_2503_17443
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle User-friendly TWA for dissipative spin dynamics
Hosseinabadi, Hossein
Chelpanova, Oksana
Marino, Jamir
Quantum Physics
Quantum Gases
We put forward a user-friendly framework of the truncated Wigner approximation (TWA) for dissipative quantum many-body systems. Our approach is computationally affordable and it features a straightforward implementation. The leverage of the method can be ultimately traced to an intimate connection between the TWA and the semi-classical limit of the quantum Langevin equation, which we unveil by resorting to a path integral representation of the Lindbladian. Our approach allows us to explore dynamics from early to late times in a variety of models at the core of modern AMO research, including lasing, central spin models, driven arrays of Rydbergs and correlated emission in free space. Notably, our TWA approach outperforms the cumulant expansion method in certain models and performs comparably well in others, all while offering significantly lower computational costs and a much simpler formulation of the dynamical equations. We therefore argue that TWA could become in the near future a primary tool for a fast and efficient first exploration of driven-dissipative many-body dynamics on consumer grade computers.
title User-friendly TWA for dissipative spin dynamics
topic Quantum Physics
Quantum Gases
url https://arxiv.org/abs/2503.17443