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Critical properties of the measurement-induced transition in random quantum circuits

Aidan ZabaloMichael J. GullansJustin H. WilsonSarang GopalakrishnanDavid A. HuseJ. H. Pixley

Abstract

We numerically study the measurement-driven quantum phase transition of Haar-random quantum circuits in $1+1$ dimensions. By analyzing the tripartite mutual information we are able to make a precise estimate of the critical measurement rate ${p}_{c}=0.17(1)$. We extract estimates for the associated bulk critical exponents that are consistent with the values for percolation, as well as those for stabilizer circuits, but differ from previous estimates for the Haar-random case. Our estimates of the surface order parameter exponent appear different from those for stabilizer circuits or percolation, but we cannot definitively rule out the scenario where all exponents in the three cases match. Moreover, in the Haar case the prefactor for the entanglement entropies ${S}_{n}$ depends strongly on the R\'enyi index $n$; for stabilizer circuits and percolation this dependence is absent. Results on stabilizer circuits are used to guide our study and identify measures with weak finite-size effects. We discuss how our numerical estimates constrain theories of the transition.

Quantum many-body systemsQuantum Computing Algorithms and ArchitectureAdvanced Bandit Algorithms ResearchPercolation (cognitive psychology)Quantum entanglementCritical exponentStatistical physicsElectronic circuitExponentMathematicsPhase transitionPercolation critical exponentsQuantum

Funding

  • National Science Foundation
  • United States-Israel Binational Science Foundation
  • Defense Advanced Research Projects Agency
Citations
376
FWCI
34.03
field-weighted impact
References
39
Percentile
100%
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Citations per year
References
Improved simulation of stabilizer circuits
Physical Review A · 2004 · 1,497 citations
Theory of open quantum systems
The Journal of Chemical Physics · 2002 · 6,024 citations
Quantum Zeno effect and the many-body entanglement transition
Physical review. B./Physical review. B · 2018 · 720 citations
Unitary-projective entanglement dynamics
Physical review. B./Physical review. B · 2019 · 491 citations
Measurement-driven entanglement transition in hybrid quantum circuits
Physical review. B./Physical review. B · 2019 · 610 citations
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