SCOAP3 Repository 18 records found  1 - 10nextSearch took 0.02 seconds. 
1. Tensor chain and constraints in tensor networks / Ling, Yi ; Liu, Yuxuan ; Xian, Zhuo-Yu ; Xiao, Yikang
We develop our recent work on quantum error correction (QEC) and entanglement spectrum (ES) in tensor networks (arXiv:1806.05007). [...]
Published in JHEP 1906 (2019) 032 10.1007/JHEP06(2019)032 arXiv:1807.10247
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2. Holography of electrically and magnetically charged black branes / Zhou, Zhenhua ; Wu, Jian-Pin ; Ling, Yi
We construct a new class of black brane solutions in Einstein-Maxwell-dilaton (EMD) theory, which is characterized by two parameters a ,  b . [...]
Published in EPJC 79 (2019) 195 10.1140/epjc/s10052-019-6705-8
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3. Holographic subregion complexity in Einstein-Born-Infeld theory / Ling, Yi ; Liu, Yuxuan ; Zhang, Cheng-Yong
We numerically investigate the evolution of the holographic subregion complexity during a quench process in Einstein-Born-Infeld theory. [...]
Published in EPJC 79 (2019) 194 10.1140/epjc/s10052-019-6696-5
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4. Quantum error correction and entanglement spectrum in tensor networks / Ling, Yi ; Liu, Yuxuan ; Xian, Zhuo-Yu ; Xiao, Yikang
A sort of planar tensor network with tensor constraints is investigated as a model for holography. [...]
Published in Physical Review D 99 (2019) 10.1103/PhysRevD.99.026008 arXiv:1806.05007
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5. Entanglement in simple spin networks with a boundarySupported by the Natural Science Foundation of China (11575195, 11875053), Y.L. also acknowledges the support from Jiangxi Young Scientists (JingGang Star) Program and 555 Talent Project of Jiangxi Province / Ling, Yi ; Wu, Meng-He ; Xiao, Yikang
We investigate the bipartite entanglement for the boundary states in a simple type of spin networks with dangling edges, in which the two complementary parts are linked by two or more edges. [...]
Published in Chinese Phys. C 43 (2019) 013106 10.1088/1674-1137/43/1/013106 arXiv:1811.03213
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6. Holographic superconductor on a novel insulatorSupported by Natural Science Foundation of China (11575195, 11775036, 11305018), Y.L. also acknowledges the support from Jiangxi young scientists (JingGang Star) program and 555 talent project of Jiangxi Province. J. P. Wu is also supported by Natural Science Foundation of Liaoning Province (201602013) / Ling, Yi ; Liu, Peng ; Wu, Jian-Pin ; Wu, Meng-He
We construct a holographic superconductor model, based on a gravity theory, which exhibits novel metal-insulator transitions. [...]
Published in Chinese Phys. C 42 (2018) 013106 10.1088/1674-1137/42/1/013106 arXiv:1711.07720
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7. Holographic butterfly effect at quantum critical points / Ling, Yi ; Liu, Peng ; Wu, Jian-Pin
When the Lyapunov exponent λ L in a quantum chaotic system saturates the bound λ L ≤ 2π k B T , it is proposed that this system has a holographic dual described by a gravity theory. [...]
Published in JHEP 1710 (2017) 025 10.1007/JHEP10(2017)025 arXiv:1610.02669
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8. Holographic butterfly effect and diffusion in quantum critical region / Ling, Yi ; Xian, Zhuo-Yu
We investigate the butterfly effect and charge diffusion near the quantum phase transition in holographic approach. [...]
Published in JHEP 1709 (2017) 003 10.1007/JHEP09(2017)003 arXiv:1707.02843
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9. Note on the butterfly effect in holographic superconductor models / Ling, Yi ; Liu, Peng ; Wu, Jian-Pin
In this note we remark that the butterfly effect can be used to diagnose the phase transition of superconductivity in a holographic framework. [...]
Published in Physics letters B (2017) 10.1016/j.physletb.2017.03.010
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10. Power law of shear viscosity in Einstein-Maxwell-Dilaton-Axion modelSupported by National Natural Science Foundation of China (11275208, 11575195), Opening Project of Shanghai Key Laboratory of High Temperature Superconductors (14DZ2260700) and Jiangxi Young Scientists (JingGang Star) Program and 555 Talent Project of Jiangxi Province / Ling, Yi ; Xian, Zhuoyu ; Zhou, Zhenhua
We construct charged black hole solutions with hyperscaling violation in the infrared (IR) region in Einstein-Maxwell-Dilaton-Axion theory and investigate the temperature behavior of the ratio of holographic shear viscosity to the entropy density. [...]
Published in Chinese Phys. C 41 (2017) 023104 10.1088/1674-1137/41/2/023104 arXiv:1610.08823
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