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February 25, 2026Journal of High Energy Physics1 citationsOpen Access

Coarse-grained bootstrap of quantum many-body systems

MCMinjae ChoCNColin Oscar NancarrowPTPetar Tadić

Key Points

  • The research aims to develop a new framework to analyze quantum many-body systems using coarse-graining and bootstrap techniques.
  • Combined coarse-graining techniques with bootstrap methods
  • Used tensor networks to implement coarse-grained bootstrap constraints
  • Focused on calculating expectation values of local observables at zero and finite temperatures
  • Analyzed infinite quantum spin chains to derive results
  • Provided rigorous upper and lower bounds for expectation values of local observables
  • Achieved tighter bounds compared to earlier methods without coarse-graining
  • Enabled access to larger subsystems resulting in improved constraints

Abstract

A bstract We present a new computational framework combining coarse-graining techniques with bootstrap methods to study quantum many-body systems. The method efficiently computes rigorous upper and lower bounds on both zero- and finite-temperature expectation values of any local observables of infinite quantum spin chains. This is achieved by using tensor networks to coarse-grain bootstrap constraints, including positivity, translation invariance, equations of motion, and energy-entropy balance inequalities. Coarse-graining allows access to constraints from significantly larger subsystems than previously possible, yielding tighter bounds compared to those obtained without coarse-graining.

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Cite This Study

Cho et al. (2026) studied this question.

synapsesocial.com/papers/699e918df5123be5ed04f253https://doi.org/10.1007/jhep02(2026)222
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