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Quantum degeneracy pressure (QDP) underscores the stability of matter and is arguably the most ubiquitous many-body effect.
1906
Earlier work this paper cites.
Linhu Li, Ching Hua Lee, and Jiangbin Gong, “Topology-induced spontaneous non-reciprocal pumping in cold-atom systems with loss,” arXiv 1910.03229 (2019b)
1910
Earlier work this paper cites.
J. R. Oppenheimer and G. M. Volkoff, “On massive neutron cores,” Phys. Rev. 55
1939
Earlier work this paper cites.
Freeman J. Dyson and A. Lenard, “Stability of matter. i,” Journal of Mathematical Physics 8
1967
Earlier work this paper cites.
Freeman J. Dyson, “Ground‐state energy of a finite system of charged particles,” Journal of Mathematical Physics 8
1967
Earlier work this paper cites.
A. Lenard and Freeman J. Dyson, “Stability of matter. ii,” Journal of Mathematical Physics 9
1968
Earlier work this paper cites.
Christoph Holzhey, Finn Larsen, and Frank Wilczek, “Geometric and renormalized entropy in conformal field theory,” Nuclear Physics B 424
1994
Earlier work this paper cites.
Lixin He and David Vanderbilt, “Exponential decay properties of wannier functions and related quantities,” Phys. Rev. Lett. 86
2001
Earlier work this paper cites.
Pasquale Calabrese and John Cardy, “Entanglement entropy and quantum field theory,” Journal of Statistical Mechanics: Theory and Experiment 2004
2004
Earlier work this paper cites.
Alexander R Its, Bai-Qi Jin, and Vladimir E Korepin, “Entanglement in the xy spin chain,” Journal of Physics A: Mathematical and General 38
2005
Earlier work this paper cites.
Michael M. Wolf, “Violation of the entropic area law for fermions,” Phys. Rev. Lett. 96
2006
Earlier work this paper cites.
Shinsei Ryu and Tadashi Takayanagi, “Holographic derivation of entanglement entropy from the anti–de sitter space/conformal field theory correspondence,” Phys. Rev. Lett. 96
2006
Earlier work this paper cites.
Dimitri Gioev and Israel Klich, “Entanglement entropy of fermions in any dimension and the widom conjecture,” Phys. Rev. Lett. 96
2006
Earlier work this paper cites.
Corinna Kollath, Michael Köhl, and Thierry Giamarchi, “Scanning tunneling microscopy for ultracold atoms,” Phys. Rev. A 76
2007
Earlier work this paper cites.
T. Senthil, “Critical fermi surfaces and non-fermi liquid metals,” Phys. Rev. B 78
2008
Earlier work this paper cites.
Sung-Sik Lee, “Stability of the u(1) spin liquid with a spinon fermi surface in 2 + 1 2+1 dimensions,” Phys. Rev. B 78
2008
Earlier work this paper cites.
Tatjana Gericke, Peter Würtz, Daniel Reitz, Tim Langen, and Herwig Ott, “High-resolution scanning electron microscopy of an ultracold quantum gas,” Nature Physics 4
2008
Earlier work this paper cites.
AR Its and VE Korepin, “The fisher-hartwig formula and entanglement entropy,” Journal of Statistical Physics 137
2009
Earlier work this paper cites.
Pasquale Calabrese and John Cardy, “Entanglement entropy and conformal field theory,” Journal of Physics A: Mathematical and Theoretical 42
2009
Earlier work this paper cites.
Peter Würtz, Tim Langen, Tatjana Gericke, Andreas Koglbauer, and Herwig Ott, “Experimental demonstration of single-site addressability in a two-dimensional optical lattice,” Phys. Rev. Lett. 103
2009
Earlier work this paper cites.
Ingo Peschel and Viktor Eisler, “Reduced density matrices and entanglement entropy in free lattice models,” Journal of Physics A: Mathematical and Theoretical 42
2009
Earlier work this paper cites.
J. Eisert, M. Cramer, and M. B. Plenio, “Colloquium: Area laws for the entanglement entropy,” Rev. Mod. Phys. 82
2010
Earlier work this paper cites.
Brian Swingle, “Entanglement entropy and the fermi surface,” Phys. Rev. Lett. 105
2010
Earlier work this paper cites.
M. A. Cazalilla, R. Citro, T. Giamarchi, E. Orignac, and M. Rigol, “One dimensional bosons: From condensed matter systems to ultracold gases,” Rev. Mod. Phys. 83
2011
Earlier work this paper cites.
Aris Alexandradinata, Taylor L Hughes, and B Andrei Bernevig, “Trace index and spectral flow in the entanglement spectrum of topological insulators,” Phys. Rev. B 84
2011
Earlier work this paper cites.
Hiroaki Matsueda, “Holographic entanglement entropy in suzuki-trotter decomposition of spin systems,” Physical Review E 85
2012
Earlier work this paper cites.
Xiao-Liang Qi, “Exact holographic mapping and emergent space-time geometry,” arXiv:1309.6282 (2013)
2013
Cited alongside, same era.
X. Z. Zhang and Z. Song, “Momentum-independent reflectionless transmission in the non-hermitian time-reversal symmetric system,” Annals of Physics 339
2013
Cited alongside, same era.
Xi-Wen Guan, Murray T. Batchelor, and Chaohong Lee, “Fermi gases in one dimension: From bethe ansatz to experiments,” Rev. Mod. Phys. 85
2013
Cited alongside, same era.
Ching Hua Lee, Peng Ye, and Xiao-Liang Qi, “Position-momentum duality in the entanglement spectrum of free fermions,” Journal of Statistical Mechanics: Theory and Experiment 2014
2014
Cited alongside, same era.
Yanfei Zhao, Haiwen Liu, Chenglong Zhang, Huichao Wang, Junfeng Wang, Ziquan Lin, Ying Xing, Hong Lu, Jun Liu, Yong Wang, et al. , “Anisotropic fermi surface and quantum limit transport in high mobility three-dimensional dirac semimetal cd 3 as 2,” Physical Review X 5
Shunyu Yao and Zhong Wang, “Edge states and topological invariants of non-hermitian systems,” Phys. Rev. Lett. 121
2018
Later among the works it cites.
Shunyu Yao, Fei Song, and Zhong Wang, “Non-hermitian chern bands,” Phys. Rev. Lett. 121
2018
Later among the works it cites.
Flore K. Kunst, Elisabet Edvardsson, Jan Carl Budich, and Emil J. Bergholtz, “Biorthogonal bulk-boundary correspondence in non-hermitian systems,” Phys. Rev. Lett. 121
2018
Later among the works it cites.
2018
Later among the works it cites.
Kazuki Yamamoto, Masaya Nakagawa, Kyosuke Adachi, Kazuaki Takasan, Masahito Ueda, and Norio Kawakami, “Theory of non-hermitian fermionic superfluidity with a complex-valued interaction,” Phys. Rev. Lett. 123
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2015
Cited alongside, same era.
Zengwei Zhu, Xiao Lin, Juan Liu, Benoît Fauqué, Qian Tao, Chongli Yang, Youguo Shi, and Kamran Behnia, “Quantum oscillations, thermoelectric coefficients, and the fermi surface of semimetallic wte 2,” Phys. Rev. Lett. 114
2015
Cited alongside, same era.
Ching Hua Lee, Xiao Zhang, and Bochen Guan, “Negative differential resistance and characteristic nonlinear electromagnetic response of a topological insulator,” Scientific Reports 5
2015
Cited alongside, same era.
Ching Hua Lee and Peng Ye, “Free-fermion entanglement spectrum through wannier interpolation,” Phys. Rev. B 91
2015
Cited alongside, same era.
Takahiro Morimoto, Shudan Zhong, Joseph Orenstein, and Joel E Moore, “Semiclassical theory of nonlinear magneto-optical responses with applications to topological dirac/weyl semimetals,” Phys. Rev. B 94
2016
Cited alongside, same era.
Adolfo G Grushin, Jörn WF Venderbos, Ashvin Vishwanath, and Roni Ilan, “Inhomogeneous weyl and dirac semimetals: Transport in axial magnetic fields and fermi arc surface states from pseudo-landau levels,” Physical Review X 6
2016
Cited alongside, same era.
Philip JW Moll, Nityan L Nair, Toni Helm, Andrew C Potter, Itamar Kimchi, Ashvin Vishwanath, and James G Analytis, “Transport evidence for fermi-arc-mediated chirality transfer in the dirac semimetal cd 3 as 2,” Nature 535
2016
Cited alongside, same era.
Yingfei Gu, Ching Hua Lee, Xueda Wen, Gil Young Cho, Shinsei Ryu, and Xiao-Liang Qi, “Holographic duality between (2+ 1)-dimensional quantum anomalous hall state and (3+ 1)-dimensional topological insulators,” Phys. Rev. B 94
2016
Cited alongside, same era.
2019
Closest in time.
Michał Papaj, Hiroki Isobe, and Liang Fu, “Nodal arc of disordered dirac fermions and non-hermitian band theory,” Phys. Rev. B 99
2019
Closest in time.
Ryusuke Hamazaki, Kohei Kawabata, and Masahito Ueda, “Non-hermitian many-body localization,” Phys. Rev. Lett. 123
2019
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Han Zhao, Xingdu Qiao, Tianwei Wu, Bikashkali Midya, Stefano Longhi, and Liang Feng, “Non-hermitian topological light steering,” Science 365
2019
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Zhesen Yang and Jiangping Hu, “Non-hermitian hopf-link exceptional line semimetals,” Phys. Rev. B 99
2019
Closest in time.
Fei Song, Shunyu Yao, and Zhong Wang, “Non-hermitian skin effect and chiral damping in open quantum systems,” Phys. Rev. Lett. 123
2019
Closest in time.
Yang Wu, Wenquan Liu, Jianpei Geng, Xingrui Song, Xiangyu Ye, Chang-Kui Duan, Xing Rong, and Jiangfeng Du, “Observation of parity-time symmetry breaking in a single-spin system,” Science 364
2019
Closest in time.
2019
Closest in time.
Chun-Hui Liu and Shu Chen, “Topological classification of defects in non-hermitian systems,” Phys. Rev. B 100
2019
Closest in time.
Ching Hua Lee and Ronny Thomale, “Anatomy of skin modes and topology in non-hermitian systems,” Phys. Rev. B 99
2019
Closest in time.
Kazuki Yokomizo and Shuichi Murakami, “Non-bloch band theory of non-hermitian systems,” Phys. Rev. Lett. 123
2019
Closest in time.
Xizheng Zhang and Jiangbin Gong, “Non-hermitian floquet topological phases: Exceptional points, coalescent edge modes, and the skin effect,” arXiv 1909.10234 (2019)
2019
Closest in time.
Hui Jiang, Li-Jun Lang, Chao Yang, Shi-Liang Zhu, and Shu Chen, “Interplay of non-hermitian skin effects and anderson localization in nonreciprocal quasiperiodic lattices,” Phys. Rev. B 100
2019
Closest in time.
Ananya Ghatak, Martin Brandenbourger, Jasper van Wezel, and Corentin Coulais, “Observation of non-hermitian topology and its bulk-edge correspondence,” arXiv 1907.11619 (2019)
2019
Closest in time.
Tobias Helbig, Tobias Hofmann, Stefan Imhof, Mohamed Abdelghany, Tobias Kiessling, Laurens W. Molenkamp, Ching Hua Lee, Alexander Szameit, Martin Greiter, and Ronny Thomale, “Observation of bulk boundary correspondence breakdown in topolectrical circuits,” arXiv 1907.11562 (2019)
2019
Closest in time.
Lei Xiao, Tianshu Deng, Kunkun Wang, Gaoyan Zhu, Zhong Wang, Wei Yi, and Peng Xue, “Observation of non-hermitian bulk-boundary correspondence in quantum dynamics,” arXiv 1907.12566 (2019)
2019
Closest in time.
Tobias Hofmann, Tobias Helbig, Frank Schindler, Nora Salgo, Marta Brzezińska, Martin Greiter, Tobias Kiessling, David Wolf, Achim Vollhardt, Anton Kabaši, Ching Hua Lee, Ante Bilušić, Ronny Thomale, and Titus Neupert, “Reciprocal skin effect and its realization in a topolectrical circuit,” arXiv 1908.02759 (2019)
2019
Closest in time.
Loïc Herviou, Nicolas Regnault, and Jens H. Bardarson, “Entanglement spectrum and symmetries in non-hermitian fermionic non-interacting models,” arXiv 1908.09852 (2019)
2019
Closest in time.
Po-Yao Chang, Jhih-Shih You, Xueda Wen, and Shinsei Ryu, “Entanglement spectrum and entropy in topological non-hermitian systems and non-unitary conformal field theories,” arXiv 1909.01346 (2019)
2019
Closest in time.
Jin Hyoun Kang, Jeong Ho Han, and Yong il Shin, “Topological creutz ladder in a resonantly shaken 1d optical lattice,” arXiv 1902.10304 (2019)
2019
Closest in time.
Phillip Weinberg and Marin Bukov, “QuSpin: a Python Package for Dynamics and Exact Diagonalisation of Quantum Many Body Systems. Part II: bosons, fermions and higher spins,” SciPost Phys. 7
2019
Closest in time.