Dynamical quantum phase transitions through the lens of mode dynamics

Fuente: arXiv
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Hauptverfasser: Mitra, Akash, Srivastava, Shashi C. L.
Format: Preprint
Veröffentlicht: 2026
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author Mitra, Akash
Srivastava, Shashi C. L.
author_facet Mitra, Akash
Srivastava, Shashi C. L.
contents We study the mode dynamics of a generic quadratic fermionic Hamiltonian under a sudden quench protocol in momentum space. Modes with zero energy at any given time, $t$, are referred to as dynamical critical modes. Among all zero-energy modes, spin-flip symmetry is restored in the eigenvector corresponding to selected zero-energy modes. This symmetry restoration is used to define the dynamical quantum phase transition (DQPT). This shows that the occurrence of these dynamical critical modes is necessary but not sufficient for a DQPT. We show that the conditions on the quench protocol and time for such dynamical symmetry restoration are the same as the divergence of the rate function and integer jump in the dynamical topological order parameter, which have been the traditional identifiers of a DQPT. This perspective also naturally explains when one or both of DQPT and ground-state quantum phase transitions will occur.
format Preprint
id arxiv_https___arxiv_org_abs_2603_05284
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Dynamical quantum phase transitions through the lens of mode dynamics
Mitra, Akash
Srivastava, Shashi C. L.
Statistical Mechanics
Quantum Gases
Strongly Correlated Electrons
Quantum Physics
We study the mode dynamics of a generic quadratic fermionic Hamiltonian under a sudden quench protocol in momentum space. Modes with zero energy at any given time, $t$, are referred to as dynamical critical modes. Among all zero-energy modes, spin-flip symmetry is restored in the eigenvector corresponding to selected zero-energy modes. This symmetry restoration is used to define the dynamical quantum phase transition (DQPT). This shows that the occurrence of these dynamical critical modes is necessary but not sufficient for a DQPT. We show that the conditions on the quench protocol and time for such dynamical symmetry restoration are the same as the divergence of the rate function and integer jump in the dynamical topological order parameter, which have been the traditional identifiers of a DQPT. This perspective also naturally explains when one or both of DQPT and ground-state quantum phase transitions will occur.
title Dynamical quantum phase transitions through the lens of mode dynamics
topic Statistical Mechanics
Quantum Gases
Strongly Correlated Electrons
Quantum Physics
url https://arxiv.org/abs/2603.05284