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In gauge/gravity duality, matrix degrees of freedom on the gauge theory side play important roles for the emergent geometry.
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H. M. Wiseman and J. A. Vaccaro, “Entanglement of indistinguishable particles shared between two parties,” Physical review letters
2003
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2003
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2004
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2005
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2006
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S. Ryu and T. Takayanagi, “Holographic derivation of entanglement entropy from AdS/CFT,” Phys. Rev. Lett
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2015
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2015
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R. M. Soni and S. P. Trivedi, “Aspects of Entanglement Entropy for Gauge Theories,” JHEP
2016
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2016
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2016
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2016
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2016
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2017
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2017
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D. Berenstein, “Submatrix deconfinement and small black holes in AdS,” JHEP
2018
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2018
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H. Z. Chen and J. L. Karczmarek, “Entanglement entropy on a fuzzy sphere with a UV cutoff,” JHEP
2018
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J. Preskill, “Simulating quantum field theory with a quantum computer,” PoS
2018
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M. Hanada, G. Ishiki, and H. Watanabe, “Partial Deconfinement,” JHEP
2019
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2019
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M. Hanada, “Bulk geometry in gauge/gravity duality and color degrees of freedom,” Phys. Rev. D
2021
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S. Sugishita, “Target space entanglement in quantum mechanics of fermions and matrices,” JHEP
2021
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K. Ghosh and C. Krishnan, “Dirichlet baths and the not-so-fine-grained Page curve,” JHEP
2021
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2022
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