supported by the National Natural Science Foundation of China(No.12004369);the Natural Science Foundation of Fujian Province(No.2022J05019);the China Postdoctoral Science Foundation(Nos.2023M733411 and 2023TQ0347);the Education and Research fund for Young Teachers of Fujian Province(No.JAT210014).
Incorporating valley as a degree of freedom into quantum anomalous Hall systems offers a novel approach to manipulating valleytronics in electronic transport.Using the Kane-Mele monolayer as a concrete model,we compre...
supported by the National Natural Science Foundation of China(Grant No.61775036);the high-level talents program of Dongguan University of Technology(Grant No.KCYCXPT2017003).
Laser has become a powerful tool to manipulate micro-particles and atoms by radiation pressure or photophoretic force,but its effectiveness for large objects is less noticeable.Here,we report the direct observation of...
supported by the National Natural Science Foundation of China(Grant Nos.12172061,12102397,and 12101064);the Opening Project of State Key Laboratory of Explosion Science and Safety Protection(Beijing Institute of Technology)(Grant No.KFJJ23-02M);the Foundation of National Key Laboratory of Shock Wave and Detonation Physics(Grant No.JCKYS2023212003);the 2023 Computational Physics Key Laboratory Youth Fund Sponsored Project(Grant No.6241A05QN23001).
Early studies on Rayleigh−Taylor instability(RTI)primarily relied on the Navier−Stokes(NS)model.As research progresses,it becomes increasingly evident that the kinetic information that the NS model failed to capture i...
support by the National Natural Science Foundation of China(Grant Nos.62075048 and 12304407);China Postdoctoral Science Foundation(Grant Nos.2023TQ0310 and GZC20232446).
Topologically protected states are important in realizing robust optical behaviors that are quite insensitive to local defects or perturbations,which provide a promising solution for robust photonic integrations.Here,...
support from the National Key R&D Program of China(Grant No.2022YFB3807700);the Shenzhen Fundamental Research Funding(Nos.JCYJ20220818100612027 and JCYJ20220818100613028);the Major Science and Technology Infrastructure Project of Shenzhen Material Genome Big-Science Facilities Platform.
Superconducting critical temperature is the most attractive material property due to its impact on the applications of electricity transmission,railway transportation,strong magnetic fields for nuclear fusion and medi...
Czech Science Foundation(GACR)project No.22-22322S,the e-INFRA CZ(ID:90254)and QM4ST(CZ.02.01.01/00/22_008/0004572)projects supported by the Ministry of Education,Youth and Sports of the Czech Republic are acknowledged;supported within the program of Czech Research Infrastructures(Project No.LM2023065).
Results of the Raman scattering experiments,heat capacity measurements,ab initio simulations of the Raman spectra and pressure-induced phase transition in UTe_(2)single crystal are reported.Assignment of symmetries to...
One of unique features of non-Hermitian systems is the extreme sensitive to their boundary conditions,e.g.,the emergence of non-Hermitian skin effect(NHSE)under the open boundary conditions,where most of bulk states b...
support of the Natural Science Foundation of Guangdong,China(No.2020A1515010634).
Non-Hermitian properties play an important role in topological acoustic systems,which can not only change the band topology but may also lead to novel applications such as non-Hermitian skin effect(NHSE).However,non-H...
In our study,we explore high-order exceptional points(EPs),which are crucial for enhancing the sensitivity of open physical systems to external changes.We utilize the Hilbert-Schmidt speed(HSS),a measure of quantum st...