Generalized Hydrodynamics of Bloch Oscillations in the Absence of a Lattice

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Main Authors: Scopa, Stefano, Zechmann, Philip, Knap, Michael, De Nardis, Jacopo, Bastianello, Alvise
Format: Preprint
Published: 2026
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author Scopa, Stefano
Zechmann, Philip
Knap, Michael
De Nardis, Jacopo
Bastianello, Alvise
author_facet Scopa, Stefano
Zechmann, Philip
Knap, Michael
De Nardis, Jacopo
Bastianello, Alvise
contents Objects subjected to a constant force generally increase their velocity over time. This expectation fails whenever their energy is a smooth and periodic function of momentum, resulting in periodic Bloch oscillations instead. Periodic dispersions, typical of lattice systems, can also emerge in continuum media through strong interactions. Here, we study the phenomenon of such Bloch oscillations in the absence of a lattice in a paradigmatic model of integrable quantum gases: the two-component Yang-Gaudin model. We derive a generalized-hydrodynamic theory of Bloch oscillations for a finite density of impurities embedded in a homogeneous interacting background, which we show to persist superimposed to a drift due to the acceleration of the center of mass. Moreover, we show the single-impurity oscillation period is renormalized at finite impurity density when two-magnon bound states are populated. Our results are relevant for ultracold atom experiments, where impurities can be created at controllable densities.
format Preprint
id arxiv_https___arxiv_org_abs_2605_18957
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Generalized Hydrodynamics of Bloch Oscillations in the Absence of a Lattice
Scopa, Stefano
Zechmann, Philip
Knap, Michael
De Nardis, Jacopo
Bastianello, Alvise
Quantum Gases
Statistical Mechanics
Exactly Solvable and Integrable Systems
Quantum Physics
Objects subjected to a constant force generally increase their velocity over time. This expectation fails whenever their energy is a smooth and periodic function of momentum, resulting in periodic Bloch oscillations instead. Periodic dispersions, typical of lattice systems, can also emerge in continuum media through strong interactions. Here, we study the phenomenon of such Bloch oscillations in the absence of a lattice in a paradigmatic model of integrable quantum gases: the two-component Yang-Gaudin model. We derive a generalized-hydrodynamic theory of Bloch oscillations for a finite density of impurities embedded in a homogeneous interacting background, which we show to persist superimposed to a drift due to the acceleration of the center of mass. Moreover, we show the single-impurity oscillation period is renormalized at finite impurity density when two-magnon bound states are populated. Our results are relevant for ultracold atom experiments, where impurities can be created at controllable densities.
title Generalized Hydrodynamics of Bloch Oscillations in the Absence of a Lattice
topic Quantum Gases
Statistical Mechanics
Exactly Solvable and Integrable Systems
Quantum Physics
url https://arxiv.org/abs/2605.18957