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Uncovering measurement-induced entanglement via directional adaptive dynamics and incomplete information
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The rich entanglement dynamics and transitions exhibited by monitored quantum systems typically only exist in the conditional state, making observation extremely difficult. In this work we construct a general recipe for mimicking the conditional entanglement dynamics of a monitored system in a corresponding measurement-free dissipative system involving directional interactions between the original system and a set of auxiliary register modes. This mirror setup autonomously implements a measurement-feedforward dynamics that effectively retains a coarse-grained measurement record. We illustrate our ideas in a bosonic system featuring a competition between entangling measurements and local unitary dynamics, and also discuss extensions to qubit systems and truly many-body systems.
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Postselection in lattice bosons undergoing continuous measurements
Connected two-point functions of quantum trajectories in continuously measured lattice bosons can be recovered by binning trajectories on filtered estimators of the measurement record, with filters derivable from the ...
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