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April 3, 20260 citationsOpen Access

Universality of Shallow Global Quenches in Critical Spin Chains

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JWJulia WeiMAMeabh AllenJKJack Kemp

Key Points

  • The study aims to investigate universal scaling behaviors in critical quench dynamics of local observables using different initial states.
  • Analyzed dynamics of local observables during global quenches
  • Utilized ground states and finite-temperature ensembles as initial conditions
  • Employed conformal perturbation theory and tensor network numerics for analysis
  • Identified universal scaling collapses and scaling functions for both initial conditions
  • Demonstrated recovery of conformal field theory results for finite-temperature quenches
  • Provided a method to extract universal quantum critical data from realistic quenches

Abstract

Measuring universal data in the strongly correlated regime of quantum critical points remains a fundamental objective for quantum simulators. In foundational work, Calabrese and Cardy demonstrated how this data governs the dynamics of certain global quenches to 1+1-dimensional conformal field theories. While the quasiparticle picture they introduce has been widely successful in both theory and experiment, their seminal prediction that the critical exponents are simply encoded in the relaxation rates of local observables is more challenging to investigate experimentally; in particular, the specific initial state required for their analysis is generated via imaginary time evolution. In this work, we examine the critical quench dynamics of local observables from two types of readily-accessible initial conditions: ground states and finite-temperature ensembles. We identify universal scaling collapses and scaling functions in both cases, utilizing a combination of conformal perturbation theory and tensor network numerics. For the finite-temperature quenches, we determine a regime in which the conformal field theory results are recovered, thereby allowing universal quantum critical data to be extracted from realistic quenches.

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Cite This Study

Wei et al. (2026) studied this question.

synapsesocial.com/papers/69cf5ced5a333a821460a751https://doi.org/10.17863/cam.128693
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Universality of Shallow Global Quenches in Critical Spin Chains2025
  2. 2Hidden quantum criticality and entanglement in quench dynamics2024 · 10 citations
  3. 3Quantum quenches from the critical point: theory and experimental validation in a trapped-ion quantum simulator2026
  4. 4Dynamical relaxation of a long-range Kitaev chain2024 · 4 citations
  5. 5Universal entanglement growth along imaginary time in quantum critical systems2026