{"id":224,"date":"2014-01-28T15:54:04","date_gmt":"2014-01-28T20:54:04","guid":{"rendered":"http:\/\/ezhao.spacs.gmu.edu\/?page_id=224"},"modified":"2025-09-08T13:19:15","modified_gmt":"2025-09-08T13:19:15","slug":"publication","status":"publish","type":"page","link":"https:\/\/ezhao.physics.gmu.edu\/index.php\/publication\/","title":{"rendered":"Publications"},"content":{"rendered":"<h5><b>2025<\/b><\/h5>\n<ul>\n<li><em>Detecting Many-Body Scars from Fisher Zeros,<\/em><br \/>\nYuchen Meng, Songtai Lv, Yang Liu, Zefan Tan, Erhai Zhao, and Haiyuan Zou,<br \/>\nPhys. Rev. Lett. 135, 070402 (2025).<\/li>\n<\/ul>\n<h5><b>2024<\/b><\/h5>\n<ul>\n<li><em>Exact Fisher zeros and thermofield dynamics across a quantum critical point<\/em>,<br \/>\nYang Liu, Songtai Lv, Yuchen Meng, Zefan Tan, Erhai Zhao, and Haiyuan Zou,<br \/>\nPhys. Rev. Research 6, 043139 (2024).<\/li>\n<li><em>From Complexification to Self-Similarity: New Aspects of Quantum Criticality<\/em>,<br \/>\nYang Liu, Erhai Zhao, and Haiyuan Zou,<br \/>\nChinese Phys. Lett. 41 100501  (2024).<\/li>\n<li><em>Pairing from repulsion in a two-dimensional Fermi gas with soft-core interactions<\/em>,<br \/>\nAhmet Keles, Xiaopeng Li, Erhai Zhao,<br \/>\nPhys. Rev. B 109, 054519 (2024).<\/li>\n<li><em>Chapter \\(2\\pi\\): Spin and Quantum Information<\/em>, Erhai Zhao,<br \/>\nguest chapter in book <i>The Wonder of Quantum Spin<\/i> by Indu Satija, Oxford University Press, ISBN 9780198884859 (2024).<\/li>\n<\/ul>\n<h5><b>2023<\/b><\/h5>\n<ul>\n<li><em>Unravelling the edge spectra of non-Hermitian Chern insulators<\/em>,<br \/>\nJames Bartlett, Erhai Zhao,<br \/>\nPhys. Rev. B 107, 035101 (2023).<\/li>\n<\/ul>\n<h5><b>2022<\/b><\/h5>\n<ul>\n<li><em>Dynamical signatures of point-gap Weyl semimetal<\/em>,<br \/>\nHaiping Hu, Erhai Zhao, W. Vincent Liu,<br \/>\nPhys. Rev. B. 106, 094305 (2022).<\/li>\n<li><em>Rise and fall of plaquette order in the Shastry-Sutherland magnet revealed by pseudofermion functional renormalization group<\/em>,<br \/>\nAhmet Kele\u015f, Erhai Zhao,<br \/>\nPhys. Rev. B 105, L041115 (2022).<\/li>\n<li><em>Learning a compass spin model with neural network quantum states<\/em>,<br \/>\nEric Zou, Erik Long, Erhai Zhao,<br \/>\nJ. Phys.: Condens. Matter 34, 125802 (2022).<\/li>\n<\/ul>\n<h5><b>2021<\/b><\/h5>\n<ul>\n<li><em>Knots and Non-Hermitian Bloch Bands<\/em>,<br \/>\nHaiping Hu, Erhai Zhao,<br \/>\nPhys. Rev. Lett. 126, 010401 (2021).<\/li>\n<li><em>Illuminating the bulk-boundary correspondence of a non-Hermitian stub lattice with Majorana stars<\/em>,<br \/>\nJames Bartlett, Haiping Hu, Erhai Zhao,<br \/>\nPhys. Rev. B 104, 195131 (2021).<\/li>\n<\/ul>\n<h5><b>2020<\/b><\/h5>\n<ul>\n<li><em>Tuning the topology of p-wave superconductivity in an analytically solvable two-band model<\/em>,<br \/>\nHaiping Hu, Erhai Zhao, Indubala I. Satija,<br \/>\nPhys. Rev. B 102, 235156 (2020).<\/li>\n<li><em>Quench dynamics of Hopf insulators<\/em>,<br \/>\nHaiping Hu, Chao Yang, Erhai Zhao,<br \/>\nPhys. Rev. B 101, 155131 (2020).<\/li>\n<li><em>Topological Invariants for Quantum Quench Dynamics from Unitary Evolution<\/em>,<br \/>\nHaiping Hu, Erhai Zhao,<br \/>\nPhys. Rev. Lett. 124, 160402 (2020).<\/li>\n<li><em>f-wave superfluidity from repulsive interaction in Rydberg-dressed Fermi gas<\/em>,<br \/>\nAhmet Keles, Erhai Zhao, Xiaopeng Li,<br \/>\nPhys. Rev. A 101, 023624 (2020).<\/li>\n<li><em>Dynamical Singularities of Floquet Higher-Order Topological Insulators<\/em>,<br \/>\nHaiping Hu, Biao Huang, Erhai Zhao, W. Vincent Liu,<br \/>\nPhys. Rev. Lett. 124, 057001 (2020).<\/li>\n<\/ul>\n<h5><b>2019<\/b><\/h5>\n<ul>\n<li><em>Chiral to helical Majorana fermion transition in a p-wave superconductor<\/em>,<br \/>\nHaiping Hu, Indubala I. Satija, Erhai Zhao,<br \/>\nNew J. Phys. 21, 123014 (2019).<\/li>\n<li><em>Scrambling dynamics and many-body chaos in a random dipolar spin model<\/em>,<br \/>\nAhmet Keles, Erhai Zhao, W. Vincent Liu,<br \/>\nPhys. Rev. A 99, 053620 (2019).<\/li>\n<li><em>Exactly Solvable Points and Symmetry-Protected Topological Phases of Quantum Spins on a Zig-Zag Lattice<\/em>,<br \/>\nHaiyuan Zou, Erhai Zhao, Xi-Wen Guan, W. Vincent Liu,<br \/>\nPhys. Rev. Lett. 122, 180401 (2019).<\/li>\n<\/ul>\n<h5><b>2018<\/b><\/h5>\n<ul>\n<li><em>Topological circuits of inductors and capacitors<\/em>,<br \/>\nErhai Zhao,<br \/>\nAnnals of Physics 399, 289-313 (2018).<\/li>\n<li><em>Renormalization group analysis of dipolar Heisenberg model on square lattice<\/em>,<br \/>\nAhmet Keles, Erhai Zhao,<br \/>\nPhys. Rev. B 97, 245105 (2018).<\/li>\n<li><em>Absence of long-range order in a triangular spin system with dipolar interactions<\/em>,<br \/>\nAhmet Keles, Erhai Zhao,<br \/>\nPhys. Rev. Lett. 120, 187202 (2018).<\/li>\n<li><em>Weyl nodes in periodic structures of superconductors and spin active materials<\/em>,<br \/>\nAhmet Keles, Erhai Zhao,<br \/>\nPhil. Trans. R. Soc. A 376, 20150151 (2018).<\/li>\n<\/ul>\n<h5><b>2017<\/b><\/h5>\n<ul>\n<li><em>Frustrated Magnetism of Dipolar Molecules on a Square Optical Lattice: Prediction of a Quantum Paramagnetic Ground State<\/em>,<br \/>\nHaiyuan Zou, Erhai Zhao, and W. Vincent Liu<br \/>\nPhys. Rev. Lett. 119, 050401 (2017).<\/li>\n<li><em>Effective theory of interacting fermions in shaken square optical lattices<\/em>,<br \/>\nAhmet Keles, Erhai Zhao, and W. Vincent Liu<br \/>\nPhys. Rev. A 95, 063619 (2017).<\/li>\n<\/ul>\n<h5><b>2016<\/b><\/h5>\n<ul>\n<li><i> Cosine Edge Mode in a Periodically Driven Quantum System,<br \/>\n<\/i>Indubala I. Satija, Erhai Zhao<br \/>\nPhys. Rev. B 94, 245128 (2016).<\/li>\n<li><i>Competing many-body instabilities in two-dimensional dipolar Fermi gases,<br \/>\n<\/i>Ahmet Keles, Erhai Zhao<i><br \/>\n<\/i>Phys. Rev. A 94, 033616 (2016).<i><br \/>\n<\/i><\/li>\n<li><em>Anatomy of a periodically driven p-wave superconductor,<\/em><br \/>\nErhai Zhao<br \/>\nZeitschrift fur Naturforschung A, 71(10), 883 (2016).<\/li>\n<li><em>A continuum of compass spin models on the honeycomb lattice<\/em>,<br \/>\nHaiyuan Zou, Bo Liu, Erhai Zhao, W. Vincent Liu<br \/>\nNew J. Phys. 18 053040 (2016).<\/li>\n<\/ul>\n<h5><b>2015<\/b><\/h5>\n<ul>\n<li><i>Spin-Orbital Exchange of Strongly Interacting Fermions in the p-Band of a Two-Dimensional Optical Lattice,<\/i><br \/>\nZhenyu Zhou, Erhai Zhao, and W. Vincent Liu<br \/>\nPhys. Rev. Lett. 114, 100406 (2015).<\/li>\n<\/ul>\n<h5><b>2014<\/b><\/h5>\n<ul>\n<li><i>Floquet edge states in a harmonically driven integer quantum Hall system,<\/i><br \/>\nZhenyu Zhou, Indubala I. Satija, and Erhai Zhao<br \/>\nPhys. Rev. B 90, 205108 (2014).<\/li>\n<li><i>SnTe field effect transistors and the anomalous electrical response of structural phase transition,<\/i><br \/>\nHaitao Li, Hao Zhu, Hui Yuan, Lin You, Curt A. Richter, Joseph J. Kopanski, Erhai Zhao, and Qiliang Li<br \/>\nApplied Physics Letters 105, 013503 (2014).<\/li>\n<li><i>Counter-propagating edge modes and topological phases of a kicked quantum Hall system,<\/i><br \/>\nMahmoud Lababidi, Indubala I. Satija, and Erhai Zhao<br \/>\nPhys. Rev. Lett. 112, 026805 (2014).<\/li>\n<\/ul>\n<h5><b>2013<\/b><\/h5>\n<ul>\n<li><i>Topological Insulators with Ultracold Atoms,<\/i><br \/>\nIndubala I. Satija and Erhai Zhao,<br \/>\nChapter 12, New Trends in Atomic and Molecular Physics, M. Mohan (eds), Springer Series on Atomic, Optical, and Plasma Physics Vol. 76, 201 (2013).<\/li>\n<li><i>Topological Insulator Bi2Se3 Nanowire High Performance Field-Effect Transistors,<\/i><br \/>\nHao Zhu, Curt A. Richter, Erhai Zhao, John E. Bonevich, William A. Kimes, Hyuk-Jae Jang, Hui Yuan, Haitao Li, Abbas Arab, Oleg Kirillov, James E. Maslar, Dimitris E. Ioannou, and Qiliang Li,<br \/>\nScientific Reports 3, 1757 (2013).<\/li>\n<li><i>Quantum Phases of Quadrupolar Fermi Gases in Optical Lattices,<\/i><br \/>\nS. G. Bhongale, L. Mathey, Erhai Zhao, S. F. Yelin, and Mikhail Lemeshko,<br \/>\nPhys. Rev. Lett. 110, 155301 (2013).<\/li>\n<li><i>Unconventional spin-density waves in dipolar Fermi gases,<\/i><br \/>\nS. G. Bhongale, L. Mathey, Shan-Wen Tsai, Charles W. Clark, and Erhai Zhao,<br \/>\nPhys. Rev. A 87, 043604 (2013).<\/li>\n<li><i>Topological states in a ladder-like optical lattice containing ultracold atoms in higher orbital bands,<\/i><br \/>\nXiaopeng Li, Erhai Zhao, and W. Vincent Liu,<br \/>\nNature Communications 4, 1523 (2013).<\/li>\n<\/ul>\n<h5><b>2012<\/b><\/h5>\n<ul>\n<li><i>Current-phase relation for Josephson effect through helical metal,<\/i><br \/>\nChristopher T. Olund and Erhai Zhao,<br \/>\nPhys. Rev. B 86, 214515 (2012).<\/li>\n<li><i>Nearly flat Andreev bound states in superconductor-topological insulator hybrid structures,<\/i><br \/>\nMahmoud Lababidi and Erhai Zhao,<br \/>\nPhys. Rev. B 86, 161108(R) (2012).<\/li>\n<li><i>Bond Order Solid of Two-Dimensional Dipolar Fermions,<\/i><br \/>\nS. G. Bhongale, L. Mathey, Shan-Wen Tsai, Charles W. Clark, and Erhai Zhao,<br \/>\nPhys. Rev. Lett. 108, 145301 (2012).<\/li>\n<\/ul>\n<h5><b>2011<\/b><\/h5>\n<ul>\n<li><i>Chern numbers hiding in time-of-flight images,<\/i><br \/>\nErhai Zhao, Noah Bray-Ali, Carl J. Williams, I. B. Spielman, and Indubala I. Satija,<br \/>\nPhys. Rev. A 84, 063629 (2011).<\/li>\n<li><i>Orbital order of spinless fermions near an optical Feshbach resonance,<\/i><br \/>\nPhilipp Hauke, Erhai Zhao, Krittika Goyal, Ivan H. Deutsch, W. Vincent Liu, and Maciej Lewenstein,<br \/>\nPhys. Rev. A 84, 051603(R) (2011).<\/li>\n<li><i>Effective action approach to the p-band Mott insulator and superfluid transition,<\/i><br \/>\nXiaopeng Li, Erhai Zhao, and W. Vincent Liu,<br \/>\nPhys. Rev. A 83, 063626 (2011).<\/li>\n<li><i>Microscopic simulation of superconductor\/topological insulator proximity structures,<\/i><br \/>\nMahmoud Lababidi and Erhai Zhao,<br \/>\nPhys. Rev. B 83, 184511 (2011).<\/li>\n<\/ul>\n<h5><b>2010<\/b><\/h5>\n<ul>\n<li><i>Mott scattering at the interface between a metal and a topological insulator,<\/i><br \/>\nErhai Zhao, Chun Zhang, and Mahmoud Lababidi,<br \/>\nPhys. Rev. B 82, 205331 (2010).<\/li>\n<li><i>Liquid crystal phases of ultracold dipolar fermions on a lattice,<\/i><br \/>\nChungwei Lin, Erhai Zhao, and W. Vincent Liu,<br \/>\nPhys. Rev. B 81, 045115 (2010).<\/li>\n<li><i>Topological Phases of Dipolar Particles in Elongated Wannier Orbitals,<\/i><br \/>\nKai Sun, Erhai Zhao, and W. Vincent Liu,<br \/>\nPhys. Rev. Lett. 104, 165303 (2010).<\/li>\n<li><i>An effective field theory for one-dimensional polarized Fermi gases,<\/i><br \/>\nErhai Zhao and W. Vincent Liu,<br \/>\nJ. Low Temp. Phys. 158, 36 (2010).<\/li>\n<\/ul>\n<h5><b>Previous papers (selected)<\/b><\/h5>\n<ul>\n<li><i>Analytic thermodynamics and thermometry of Gaudin-Yang Fermi gases,<\/i><br \/>\nErhai Zhao, Xi-Wen Guan, W. Vincent Liu, M. T. Batchelor, and Masaki Oshikawa,<br \/>\nPhys. Rev. Lett. 103, 140404 (2009).<\/li>\n<li><i>Theory of quasi-one dimensional imbalanced Fermi gases,<\/i><br \/>\nErhai Zhao and W. Vincent Liu, Phys. Rev. A 78, 063605 (2008).<\/li>\n<li><i>Orbital order in Mott insulators of spinless p-band fermions,<\/i><br \/>\nErhai Zhao and W. Vincent Liu, Phys. Rev. Lett. 100, 160403 (2008).<\/li>\n<li><i>Theory of nonequilibrium spin transport and spin transfer torque in superconducting- ferromagnetic nanostructures,<\/i><br \/>\nErhai Zhao and J. A. Sauls, Phys. Rev. B 78, 174511 (2008).<\/li>\n<li><i>Dynamics of spin transport in voltage-biased Josephson junctions,<\/i><br \/>\nErhai Zhao and J. A. Sauls, Phys. Rev. Lett. 98, 206601 (2007).<\/li>\n<li><i>Temperature dependent Fermi arcs in the normal state of the underdoped cuprate superconductors,<\/i><br \/>\nArun Paramekanti and Erhai Zhao, Phys. Rev. B 75, 140507 (2007).<\/li>\n<li><i>BCS-BEC crossover on the two-dimensional honeycomb lattice,<\/i><br \/>\nErhai Zhao and Arun Paramekanti, Phys. Rev. Lett. 97, 230404 (2006).<\/li>\n<li><i>Excitations in correlated superfluids near a continuous transition into a supersolid,<\/i><br \/>\nErhai Zhao and Arun Paramekanti, Phys. Rev. Lett. 96, 105303 (2006).<\/li>\n<li><i>Nonequilibrium superconductivity near spin active interfaces,<\/i><br \/>\nErhai Zhao, Tomas Lofwander, and J. A. Sauls, Phys. Rev. B 70, 134510 (2004).<\/li>\n<li><i>Phase modulated thermal conductance of Josephson weak links,<\/i><br \/>\nErhai Zhao, Tomas Lofwander, and J. A. Sauls, Phys. Rev. Lett. 91, 077003 (2003).<\/li>\n<\/ul>\n","protected":false},"excerpt":{"rendered":"<p>2025 Detecting Many-Body Scars from Fisher Zeros, Yuchen Meng, Songtai Lv, Yang Liu, Zefan Tan, Erhai Zhao, and Haiyuan Zou, Phys. Rev. Lett. 135, 070402 (2025). 2024 Exact Fisher zeros and thermofield dynamics across a quantum critical point, Yang Liu, Songtai Lv, Yuchen Meng, Zefan Tan, Erhai Zhao, and Haiyuan Zou, Phys. Rev. Research 6, [&hellip;]<\/p>\n","protected":false},"author":3,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-224","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/ezhao.physics.gmu.edu\/index.php\/wp-json\/wp\/v2\/pages\/224","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/ezhao.physics.gmu.edu\/index.php\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/ezhao.physics.gmu.edu\/index.php\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/ezhao.physics.gmu.edu\/index.php\/wp-json\/wp\/v2\/users\/3"}],"replies":[{"embeddable":true,"href":"https:\/\/ezhao.physics.gmu.edu\/index.php\/wp-json\/wp\/v2\/comments?post=224"}],"version-history":[{"count":16,"href":"https:\/\/ezhao.physics.gmu.edu\/index.php\/wp-json\/wp\/v2\/pages\/224\/revisions"}],"predecessor-version":[{"id":1729,"href":"https:\/\/ezhao.physics.gmu.edu\/index.php\/wp-json\/wp\/v2\/pages\/224\/revisions\/1729"}],"wp:attachment":[{"href":"https:\/\/ezhao.physics.gmu.edu\/index.php\/wp-json\/wp\/v2\/media?parent=224"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}