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Measurement-induced criticality in random quantum circuits

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arxiv 1908.08051 v1 pith:SRZOWAID submitted 2019-08-21 cond-mat.stat-mech cond-mat.dis-nncond-mat.str-elquant-ph

Measurement-induced criticality in random quantum circuits

classification cond-mat.stat-mech cond-mat.dis-nncond-mat.str-elquant-ph
keywords transitionentanglementcircuitsentropieslimitmechanicsmodelpercolation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We investigate the critical behavior of the entanglement transition induced by projective measurements in (Haar) random unitary quantum circuits. Using a replica approach, we map the calculation of the entanglement entropies in such circuits onto a two-dimensional statistical mechanics model. In this language, the area- to volume-law entanglement transition can be interpreted as an ordering transition in the statistical mechanics model. We derive the general scaling properties of the entanglement entropies and mutual information near the transition using conformal invariance. We analyze in detail the limit of infinite on-site Hilbert space dimension in which the statistical mechanics model maps onto percolation. In particular, we compute the exact value of the universal coefficient of the logarithm of subsystem size in the $n$th R\'enyi entropies for $n \geq 1$ in this limit using relatively recent results for conformal field theory describing the critical theory of 2D percolation, and we discuss how to access the generic transition at finite on-site Hilbert space dimension from this limit, which is in a universality class different from 2D percolation. We also comment on the relation to the entanglement transition in Random Tensor Networks, studied previously in Ref. 1.

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Cited by 2 Pith papers

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    The tricritical point at the learning transition of deformed toric codes is a higher Nishimori critical point where the Edwards-Anderson correlation exponent exactly matches the clean Ising spin exponent and c_eff is ...

  2. Fractal structure of multipartite entanglement in monitored quantum circuits

    quant-ph 2025-11 conditional novelty 5.0

    In monitored Clifford circuits, the largest entangled cluster has an approximate fractal spatial structure whose box-counting dimension equals the entanglement-depth growth exponent away from the critical point.