supported by the National Natural Science Foundation of China(Grant No.12474159);the Fundamental Research Funds for the Central University,Sun Yat-sen University(Grant No.24qnpy119);the China Postdoctoral Science Foundation(Grant No.2024T171067)。
We investigate distinct non-Hermitian skin effects(NHSEs)in real and Fock spaces induced by the interplay between the Hilbert space fragmentation and multiple non-Hermitian pumping channels.Using an extended Hatano–N...
The study by Shao et al.1 marks a critical advancement in quantum simulations by reporting the first experimental observation of the antiferromagnetic(AFM)phase transition in a three-dimensional(3D)fermionic Hubbard m...
Supported in part by the Major Project of Basic and Applied Basic Research of Guangdong Province,China(2020B0301030008);the National Natural Science Foundation of China(12035008,12247151,12305110,12347121)。
Effective field theory(EFT)provides a model-independent framework for interpreting the results of dark matter(DM)direct detection experiments.In this study,we demonstrate that the two fermionic DM-quark tensor operato...
Results of combined thermal and electrical transport measurements through the magnetic field-induced quantum critical point(QCP)in the heavy-fermion compound YbRh_(2)Si_(2) were revisited to explore the relationship b...
supported by the Cluster of Excellence“Advanced Imaging of Matter”of the Deutsche Forschungsgemeinschaft(DFG)-EXC 2056-Project No.ID390715994 and through the research unit QUAST,FOR 5249-project No.ID449872909;by European Research Council via Synergy Grant 854843-FASTCORR;supported by the Simons Foundation via the Simons Collaboration on the Many Electron Problem;supported by National Science Foundation grant number 1548562;supported by the Cluster of Excellence“Advanced Imaging of Matter”of the Deutsche Forschungsgemeinschaft(DFG)-EXC 2056-Project No.ID390715994 and through the research unit QUAST,FOR 5249-project No.ID449872909;by European Research Council via Synergy Grant 854843-FASTCORR;supported by the Simons Foundation via the Simons Collaboration on the Many Electron Problem;supported by National Science Foundation grant number 1548562.
We have developed a strong-coupling perturbation scheme for a general doped Hubbard model around a particle-hole-symmetric reference system,which is free from the fermionic sign problem.Our approach is based on the la...
Supported by National Key R&DProgram of China(Grant No.2020YFE0204200);NSFC(Grant Nos.12225101,12061131014 and 11890660)。
We construct the quantum curve for the Baker-Akhiezer function of the orbifold Gromov-Witten theory of the weighted projective line P[r].Furthermore,we deduce the explicit bilinear Fermionic formula for the(stationary...
Supported by RFBR(Grant Nos.19-01-00474,20-51-05006)。
This review is devoted to one of the most interesting and actively developing fields in condensed matter physics—theory of topological insulators.Apart from its importance for theoretical physics,this theory enjoys n...
financially supported by the Innovation Program for Quantum Science and Technology(Grant No.2021ZD0302400);the National Natural Science Foundation of China(Grant No.11974271);the Strategic Priority Research Program of Chinese Academy of Sciences(Grant No.XDB28000000);the National Basic Research Program of China(Grant No.2015CB921102);the China Postdoctoral Science Foundation(Grant No.2021M690233)。
Majorana zero modes(MZMs)have been intensively studied in recent decades theoretically and experimentally as the most promising candidate for non-Abelian anyons supporting topological quantum computation(TQC).In addit...
We search for Lorentz symmetry violation effects at low-energy regime by exploring the Dirac equation in(1+1)-dimensions and the possibility of dealing with quantum systems with spherical symmetry.We bring a discussio...
Supported by the National Natural Science Foundation of China (12175248);Supported by the research grant"the Dark Universe:A Synergic Multi-messenger Approach"number (2017X7X85K) under the program PRIN 2017 funded by the Ministero dell’Istruzione,Universitàe della Ricerca (MIUR)
New physics could be explored through loop effects using the precision measurements at the Circular Electron Positron Collider(CEPC)owing to its clean collision environment and high luminosity.In this paper,we focus o...