A Physical Theory of Two-stage Thermalization
October 06, 2023 Β· Declared Dead Β· π arXiv.org
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Authors
Cheryne Jonay, Tianci Zhou
arXiv ID
2310.04491
Category
quant-ph: Quantum Computing
Cross-listed
cond-mat.dis-nn,
cond-mat.stat-mech,
cs.IT
Citations
4
Venue
arXiv.org
Last Checked
5 months ago
Abstract
One indication of thermalization time is subsystem entanglement reaching thermal values. Recent studies on local quantum circuits reveal two exponential stages with decay rates $r_1$ and $r_2$ of the purity before and after thermalization. We provide an entanglement membrane theory interpretation, with $r_1$ corresponding to the domain wall free energy. Circuit geometry can lead to $r_1 < r_2$, producing a ``phantom eigenvalue". Competition between the domain wall and magnon leads to $r_2 < r_1$ when the magnon prevails. However, when the domain wall wins, this mechanism provides a practical approach for measuring entanglement growth through local correlation functions.
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