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Abstract
Symmetry resolved entanglement and entanglement asymmetry are two measures of quantum correlations sensitive to symmetries of the system. Here we discuss their non-equilibrium dynamics in the Rule 54 cellular automaton, a simple, yet interacting, integrable model. Both quantities can be expressed in terms of the more analytically tractable ‘charged moments’, i.e. traces of powers of a suitably deformed density matrix, via a replica trick. We express them in terms of a tensor network, which we contract in space using a system of local algebraic relations. This gives the asymptotic form for the charged moments, valid in the regime of large but finite time that is shorter than all the relevant subsystem sizes. In this regime the charge moments decay exponentially with the rate given by the leading solution to a cubic equation.
| Original language | English |
|---|---|
| Article number | 505001 |
| Number of pages | 21 |
| Journal | Journal of Physics A: Mathematical and Theoretical |
| Volume | 57 |
| Issue number | 50 |
| Early online date | 26 Nov 2024 |
| DOIs | |
| Publication status | Published - 13 Dec 2024 |
Keywords
- quantum quench
- symmetry-resolved entanglement
- entanglement entropy
- integrable models
- quantum circuits
- entanglement asymmetry
- exact solutions
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Dive into the research topics of 'Non-equilibrium dynamics of symmetry-resolved entanglement and entanglement asymmetry: exact asymptotics in Rule 54'. Together they form a unique fingerprint.Projects
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Understanding thermalization through exact dynamics of quantum circuits
Klobas, K. (Principal Investigator)
8/04/24 → 30/09/25
Project: Research
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