Replica Keldysh analysis shows monitored 1D free fermions exhibit area-law entanglement beyond an exponentially large scale ln(l_φ,*) ~ J/[γ cos(φ)], with no genuine measurement- or unraveling-induced entanglement transitions.
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A non-Markovian theory of muon spin relaxation is derived from an open-quantum-system influence-functional approach and applied to Li0.73CoO2 data, recovering Kubo-Toyabe limits while introducing a fitted memory parameter.
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Absence of measurement- and unraveling-induced entanglement transitions in continuously monitored one-dimensional free fermions
Replica Keldysh analysis shows monitored 1D free fermions exhibit area-law entanglement beyond an exponentially large scale ln(l_φ,*) ~ J/[γ cos(φ)], with no genuine measurement- or unraveling-induced entanglement transitions.
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Open Quantum System Theory of Muon Spin Relaxation in Materials
A non-Markovian theory of muon spin relaxation is derived from an open-quantum-system influence-functional approach and applied to Li0.73CoO2 data, recovering Kubo-Toyabe limits while introducing a fitted memory parameter.