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Monitored quantum circuits can exhibit an entanglement transition as a function of the rate of measurements, stemming from the competition between scrambling unitary dynamics and disentangling projective measurements.
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Marko Žnidarič, “Entanglement growth in diffusive systems,” Communications Physics 3
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Youjin Deng and Henk W.J. Blöte, “Simultaneous analysis of several models in the three-dimensional Ising universality class,” Physical Review E - Statistical Physics, Plasmas, Fluids, and Related Interdisciplinary Topics 68
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Matthew Fisher, “Duality in low dimensional quantum field theories,” in Strong interactions in low dimensions (Springer, 2004) pp. 419–438
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2016
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John Preskill, “Quantum {C}omputing in the {NISQ} era and beyond,” Quantum 2
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2007
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2007
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Luigi Amico, Rosario Fazio, Andreas Osterloh, and Vlatko Vedral, “Entanglement in many-body systems,” Reviews of Modern Physics 80
2008
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Yichen Huang, “Dynamics of Rényi entanglement entropy in diffusive qudit systems,” IOP SciNotes 1
2008
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Ryszard Horodecki, Paweł Horodecki, Michał Horodecki, and Karol Horodecki, “Quantum entanglement,” Reviews of Modern Physics 81
2009
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2009
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2009
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J. Eisert, M. Cramer, and M. B. Plenio, “Colloquium: Area laws for the entanglement entropy,” Reviews of Modern Physics 82
2010
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Zack Weinstein, Yimu Bao, and Ehud Altman, “Measurement-induced power law negativity in an open monitored quantum circuit,” (2022)
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