Quantum dynamics in lattices in presence of bulk dephasing and a localized source

Fuente: arXiv
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Autori principali: Ray, Tamoghna, Ganguly, Katha, Poletti, Dario, Kulkarni, Manas, Agarwalla, Bijay Kumar
Natura: Preprint
Pubblicazione: 2025
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author Ray, Tamoghna
Ganguly, Katha
Poletti, Dario
Kulkarni, Manas
Agarwalla, Bijay Kumar
author_facet Ray, Tamoghna
Ganguly, Katha
Poletti, Dario
Kulkarni, Manas
Agarwalla, Bijay Kumar
contents The aim of this work is to study the dynamics of quantum systems subjected to a localized fermionic source in the presence of bulk dephasing. We consider two classes of one-dimensional lattice systems: (i) a non-interacting lattice with nearest-neighbor and beyond, i.e., long-ranged (power-law) hopping, and (ii) a lattice that is interacting via short-range interactions modeled by a fermionic quartic Hamiltonian. We study the evolution of the local density profile $n_i(t)$ within the system and the growth of the total particle number $N(t)$ in it. For case (i), we provide analytical insights into the dynamics of the nearest-neighbor model using an adiabatic approximation, which relies on assuming faster relaxation of coherences of the single particle density matrix. For case (ii), we perform numerical computations using the time-evolving block decimation (TEBD) algorithm and analyze the density profile and the growth exponent in $N(t)$. Our detailed study reveals an interesting interplay between Hamiltonian dynamics and various environmentally induced mechanisms in open quantum systems, such as local source and bulk dephasing. It brings out rich dynamics, including universal dynamical scaling and anomalous behavior across various time scales and is of relevance to various quantum simulation platforms.
format Preprint
id arxiv_https___arxiv_org_abs_2511_00577
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum dynamics in lattices in presence of bulk dephasing and a localized source
Ray, Tamoghna
Ganguly, Katha
Poletti, Dario
Kulkarni, Manas
Agarwalla, Bijay Kumar
Quantum Physics
Mesoscale and Nanoscale Physics
Statistical Mechanics
The aim of this work is to study the dynamics of quantum systems subjected to a localized fermionic source in the presence of bulk dephasing. We consider two classes of one-dimensional lattice systems: (i) a non-interacting lattice with nearest-neighbor and beyond, i.e., long-ranged (power-law) hopping, and (ii) a lattice that is interacting via short-range interactions modeled by a fermionic quartic Hamiltonian. We study the evolution of the local density profile $n_i(t)$ within the system and the growth of the total particle number $N(t)$ in it. For case (i), we provide analytical insights into the dynamics of the nearest-neighbor model using an adiabatic approximation, which relies on assuming faster relaxation of coherences of the single particle density matrix. For case (ii), we perform numerical computations using the time-evolving block decimation (TEBD) algorithm and analyze the density profile and the growth exponent in $N(t)$. Our detailed study reveals an interesting interplay between Hamiltonian dynamics and various environmentally induced mechanisms in open quantum systems, such as local source and bulk dephasing. It brings out rich dynamics, including universal dynamical scaling and anomalous behavior across various time scales and is of relevance to various quantum simulation platforms.
title Quantum dynamics in lattices in presence of bulk dephasing and a localized source
topic Quantum Physics
Mesoscale and Nanoscale Physics
Statistical Mechanics
url https://arxiv.org/abs/2511.00577