Emergent symmetries arise at low-energy scales in many-body quantum systems independently of microscopic details.
the verdict
SUPPORTED
the evidence backs this
confidence 85/100
Multiple studies in many-body quantum physics confirm that universal behaviors and emergent symmetries reliably arise at low energy scales regardless of microscopic differences.
Evidence for · 5
Quantum phases and transitions in spin chains with non-invertible symmetries
2024 · cited by 41
Paper [1] notes that generalized and emergent symmetries frequently appear in low-energy effective descriptions of quantum many-body systems.
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More for · 4
Emergent universal quench dynamics in randomly interacting spin models
2024 · cited by 22
Paper [4] discusses how universal behavior and emergent properties commonly arise in the low-energy physics of many-body systems despite microscopic differences.
Universality of pseudo-Goldstone damping near critical points
2024 · cited by 9
Paper [7] shows that low-energy critical dynamics and pseudo-Goldstone damping exhibit universal properties irrespective of microscopic details.
Universality in low-dimensional BCS theory
2023 · cited by 8
Paper [8] demonstrates that low-energy BCS theory exhibits universal ratios independent of the microscopic details of the interaction.
Detecting the Emergent Continuous Symmetry of Criticality via a Subsystem's Entanglement Spectrum.
2025 · cited by 6
Paper [9] highlights that emergent symmetries at critical points in quantum many-body systems form the foundation of their universal low-energy descriptions.