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Many-body localization (MBL) describes a quantum phase where an isolated interacting system subject to sufficient disorder displays non-ergodic behavior, evading thermal equilibrium that occurs under its own dynamics.
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2019
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Thorsten B. Wahl, Arijeet Pal, and Steven H. Simon, “Signatures of the many-body localized regime in two dimensions,” Nature Physics 15
2019
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Thomas Kohlert, Sebastian Scherg, Xiao Li, Henrik P. Lüschen, Sankar Das Sarma, Immanuel Bloch, and Monika Aidelsburger, “Observation of many-body localization in a one-dimensional system with a single-particle mobility edge,” Phys. Rev. Lett. 122
2019
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Matthew Rispoli, Alexander Lukin, Robert Schittko, Sooshin Kim, M. Eric Tai, Julian Léonard, and Markus Greiner, “Quantum critical behaviour at the many-body localization transition,” Nature 573
2019
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Chao Song, Kai Xu, Hekang Li, Yu-Ran Zhang, Xu Zhang, Wuxin Liu, Qiujiang Guo, Zhen Wang, Wenhui Ren, Jie Hao, Hui Feng, Heng Fan, Dongning Zheng, Da-Wei Wang, H. Wang, and Shi-Yao Zhu, “Generation of multicomponent atomic schrödinger cat states of up to 20 qubits,” Science 365
2019
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Alexander Lukin, Matthew Rispoli, Robert Schittko, M. Eric Tai, Adam M. Kaufman, Soonwon Choi, Vedika Khemani, Julian Léonard, and Markus Greiner, “Probing entanglement in a many-body–localized system,” Science 364
2019
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2019
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