[1] Z. X. Feng, et al, An anomalous Hall effect in altermagnetic ruthenium dioxide, Nat. Electron., 5(11), 735 (2022).
[2] W. Liu, et al, Weyl semimetal states generated extraordinary Quasi-Linear magnetoresistance and nernst thermoelectric power factor in polycrystalline NbP, Adv. Funct. Mater., 32(28), 2202143 (2022).
[3] Y. Ji, et al, Quantum linear magnetoresistance and nontrivial berry phase in high-mobility elemental tellurium, Adv. Electron. Mater., 8(11), 2200653 (2022).
[4] L. M. Xu, et al, Shubnikov-de Haas oscillations and nontrivial topological states in Weyl semimetal candidate SmAlSi, J. Phys-Condens. Mat., 34(48), 485701 (2022).
[5] Salawu Yusuff Adeyemi, et al, Nontrivial Berry's phase and exotic quantum phenomena in the vicinity of the quantum limit in the three-dimensional Dirac system Bi0.97Sb0.03, Mat. Sci. Eng. B-Adv., 286, 116079 (2022).
[6] X. B. He, et al, Pressure-tuning domain-wall chirality in noncentrosymmetric magnetic Weyl semimetal CeAlGe, Sci. China Phys. Mech., 66(3) (2022).
[7] X. K. Li, et al, Free energy of twisting spins in Mn3Sn, Phys. Rev. B, 106(2), L020402 (2022).
[8] L. M. Xu, et al, Strong anisotropic Hall effect in single-crystalline CeMn2Ge2 with helical spin order, Phys. Rev. B, 105(7), 075108 (2022).
[9] J. T. Dong, et al, Tunneling magnetoresistance in noncollinear antiferromagnetic tunnel junctions, Phys. Rev. Lett., 128(19), 197201 (2022).
[10] Q. Bian, et al, Visualizing discrete Fermi surfaces and possible nodal-line to Weyl state evolution in ZrSiTe, npj Quantum Mater., 7(1), 55 (2022).
[11] A. Y. Luo, et al, Fragile topological band in the checkerboard antiferromagnetic monolayer FeSe, npj Comput. Mater., 8(1), 26 (2022).
[12] M. Liang, et al, Gate-induced half metals in Bernal-stacked graphene multilayers, Phys. Rev. B, 105(4), 045419 (2022).
[13] M. Liang, et al, Moire band structures of the double twisted few-layer graphene, Phys. Rev. B, 105(19), 195422 (2022).
[14] Y. F. Xie, et al, Electron-phonon coupling in the charge density wave state of CsV3Sb5, Phys. Rev. B, 105(14), L140501 (2022).
[15] W. J. Liu, et al, Prediction of new topological superconductor candidate 1T-Ti(Se1-yTey)2, Phys. Rev. Res., 4(2), 023127 (2022).
[16] Y. Li, et al, Topological Luttinger semimetallic phase accompanied with surface states realized in silicon, Phys. Rev. B, 105(3), 035136 (2022).
[17] H. Y. Niu , et al, Magnetoresistance relaxation steps originating from dynamic spin-orbital interactions in Ca3Ru2O7, Phys. Rev. B, 106(17), 174415 (2022).
[18] Y. He, et al, Observation of biradical spin coupling through hydrogen bonds, Phys. Rev. Lett., 128(23), 236401 (2022).
[19] N. Hu, et al, Strain tuned magnetotransport of Jeff=1/2 antiferromagnetic Sr2IrO4 thin films, Mater. Today Phys., 27, 100809 (2022).
[20] Y. Q. Pan, et al, Anisotropic critical current density and flux pinning mechanism of Fe1+yTe0.6Se0.4 single crystals, Supercond. Sci. Tech., 35(1), 015002 (2022).
[21] C. Li, et al, Controllable Majorana vortex states in iron-based superconducting nanowires, Natl. Sci. Rev., 9(9), nwac095 (2022).
[22] H. N. Xia, et al, Spin-orbital Yu-Shiba-Rusinov states in single Kondo molecular magnet, Nat. Commun., 13(1), 6388 (2022).
[23] Y. M. Chu, et al, Thermodynamic principle for quantum metrology, Phys. Rev. Lett., 128(20), 200501(2022)
[24] G. L. Guo, et al, 0-π qubit with one Josephson junction, Phys. Rev. B, 105(18), L180502 (2022).
[25] X. H. Pan, et al, Detecting and braiding higher-order Majorana corner states through their spin degree of freedom, Phys. Rev. B, 105(19), 195106 (2022).
[26] Y. P. Pan, et al, Elastic properties of a Sc-Zr-Nb-Ta-Rh-Pd high-entropy alloy superconductor, Materials Today Communications, 33, 104265 (2022).
[27] K. Q. Cheng, et al, Uniaxial stress effect on quasi-one-dimensional Kondo lattice CeCo2Ga8, Chinese Phys. B, 31(6), 067104 (2022).
[28] Y. K. Luo, et al, La2Rh3+δSb4: a new ternary superconducting rhodium-antimonide, Materials Futures, 1, 045201 (2022).
[29] Y. S. Tang, et al, Successive electric polarization transitions induced by high magnetic field in the single-crystal antiferromagnet Co2Mo3O8, Phys. Rev. B, 105(6), 064108 (2022).
[30] X. C. Liu, et al, Magnetism and ESR of the Seff=1/2 antiferromagnet BaCo2(SeO3)3·3H2O with dimer-chain structure, Phys. Rev. B, 105(13), 134417 (2022).
[31] J. J. Cao, et al, Unusual dimerization and magnetization plateaus in S=1 skew chain Ni2V2O7 observed at 120 T, Phys. Rev. B, 106(18), 184409 (2022).
[32] L. Yuan, et al, Possible coexistence of short-range resonating valence bond and long-range stripe correlations in the spatially anisotropic triangular-lattice quantum magnet Cu2(OH)3NO3, Phys. Rev. B, 106(8), 085119 (2022).
[33] C. Dong, et al, Reentrant ferroelectric phase induced by a tilting high magnetic field in Ni3V2O8, Phys. Rev. B, 105(2), 024427 (2022).
[34] G. S. Gong, et al, High-field magnetization and magnetodielectric effect in a Ni2NbBO6 single crystal, Phys. Rev. B, 105(5), 054408 (2022).
[35] Z. Zeng, et al, High-magnetic-sensitivity magnetoelectric coupling origins in a combination of anisotropy and exchange striction, Nanomaterials, 12(18), 3092 (2022).
[36] Y. J. Song, et al, Influence of barium intercalated ions on magnetic interaction in the tellurate compound BaNi2TeO6, Inorg. Chem., 61(15) , 5731-5736 (2022).
[37] K. Xia, et al, Single crystal growth of Ba2Ni(PO4)2 by using the optical floating-zone method, J. Cryst. Growth, 596, 126827 (2022).
[38] G. L. Xiao, et al, Magnetic properties and phase diagram of quasi-two-dimensional Na2Co2TeO6 single crystal under high magnetic field, J. Phys-Condens. Mat., 34(7), 075801 (2022).
[39] C. Shang, et al, Effects of Bi3+ doping on the charge ordering and high-field phase diagram of La0.5-xBixCa0.5MnO3, J. Magn. Magn. Mater., 554, 169321 (2022).
[40] Y. J. Song, et al, The tuning of oxalato-bridge on magnetic interaction and field-induced phase transition in Ba2Co2Cl2(C2O4)3·4H2O, J. Magn. Magn. Mater., 557, 169475 (2022).
[41] Y. J. Zhou, et al, Piezoelectric strain-controlled magnon spin current transport in an antiferromagnet, Nano Lett., 22(12) , 4646-4653 (2022).
[42] J. T. Wu, et al, Magnetic field effects on the quantum spin liquid behaviors of NaYbS2, Quant. Front. 1, 13(2022).
[43] F. J. Lu, et al, The observation of quantum fluctuations in a kagome Heisenberg antiferromagnet, Commun. Phys., 5(1), 272 (2022).
[44] H. Y. Niu, et al, Dynamic properties of spin-orbital correlation effects in the spinel MnV2O4, Phys. Rev. B, 105(5), 054401 (2022).
[45] Z. Zhang, et al, Anisotropic exchange coupling and ground state phase diagram of Kitaev compound YbOCl, Phys. Rev. Res., 4(3), 033006 (2022).
[46] C. Shang, et al, Irreversible metamagnetic behaviors and H-T phase diagram in phase separated La0.5Ca0.5Mn1-xAlxO3-δ, Ceram. Int., 49(6), 8743-8753 (2022).
[47] T. T. Xiao, et al, Angular dependence of spin-flop transition in triangular lattice antiferromagnet Cu2(OH)3Br, J. Phys-Condens. Mat., 34(27), 275804 (2022).
[48] Z. T. Wan, et al, Electrical transport and magnetic properties of the triangular-lattice compound Zr2NiP2, Chem. Phys. Lett., 804, 139896 (2022).
[49] Y. M. Zhao, et al, Magnetic and magnetocaloric properties in GdFeTiO5 and GdMnTeO6, Physica B, 639, 413983 (2022).
[50] G. Xiao, et al, Origin of magnetic dielectric effect in geometry frustrated CuFe1-xMnxO2 single crystal, J. Supercond. Nov. Magn., 35(5), 1099-1105 (2022).
[51] H. P. Bu, et al, Gapless triangular-lattice spin-liquid candidate PrZnAl11O19, Phys. Rev. B, 106(13), 134428 (2022).
[52] Z. B. Hu, et al, A new insight into the unique magneto-optical effect of layered perovskite (C6H5C2H3FNH3)2MnCl4, Aggregate, e294 (2022).
[53] X. He, et al, Magnetoresistance retraction behaviour of Ag/p-Ge:Ga/Ag device under pulsed high magnetic field, J. Mater. Sci. Technol., 114, 1-6 (2022).
[54] J. Li, et al, Many-Body exciton and intervalley correlations in heavily electron doped WSe2 monolayers, Nano Lett., 22(1), 426-432 (2022).
[55] S. Wu, et al, Influence of intrinsic or extrinsic doping on charge state of carbon and its interaction with hydrogen in GaN, Appl. Phys. Lett., 120(24), 242101 (2022).
[56] Y. F. Ma, et al, Green emission in Fe- and Mn-doped ZnO nanowires studied by magneto-photoluminescence, J. Lumin., 241, 118521 (2022).
[57] X. He, et al, Evolution of electrical transport property in Ge-based negative differential resistance devices under pulsed high magnetic field, Phys. Status Solidi-R, 16(8), 2200165 (2022).
[58] J. C. Zhong, Strain-sensitive ferromagnetic two-dimensional Cr2Te3, Nano Research 15, 1254 (2022).
[59] J. J. Xian, et al, Spin mapping of intralayer antiferromagnetism and field-induced spin reorientation in monolayer CrTe2, Nat. Commun., 13(1), 257 (2022).
[60] H. W. Dai, et al, Nonlocal manipulation of magnetism in an itinerant two-dimensional ferromagnet, ACS Nano, 16(8) , 12437-12444 (2022).
[61] Q. H. Hao, et al, 2D magnetic heterostructures and emergent spintronic devices, Adv. Electron. Mater., 8(11), 2200164 (2022).
[62] X. F. Li, et al, Van der Waals epitaxial trilayer MoS2 crystals for high-speed electronics, Adv. Funct. Mater., 32(46), 2208091 (2022).
[63] H. Gao, et al, Co-polarized second harmonic generation induced by ferroelectric domains and domain wall arrays, Adv. Opt. Mater., 10(21), 2200831 (2022).
[64] C. Tian, et al, Relaxation oscillations of an exciton-polariton condensate driven by parametric scattering, Nano Lett., 22(7) (2022).
[65] R. F. Li, et al, In-memory mathematical operations with spin-orbit torque devices, Adv. Sci., 9(25), 2202478 (2022).
[66] Z. X. Liu, et al, Highly thermally conductive bimorph structures for low-grade heat energy harvester and energy-efficient actuators, ACS Appl. Mater. Interfaces, 14(34), 39031-39038 (2022).
[67] X. H. Shi, et al, Improved self-heating in short-channel monolayer WS2 transistors with high-thermal conductivity BeO dielectrics, Nano Lett., 22, 7667−7673 (2022).
[68] R. Li, et al, Planar heterojunction of ultrathin CrTe3 and CrTe2 van der Waals magnet, ACS Nano, 16(3), pp.4348-4356 (2022).
[69] X. Xiong, et al, Flexible synaptic floating gate devices with dual electrical modulation based on ambipolar black phosphorus, iScience, 25(3), 103947 (2022).
[70] Y. D. Guan, et al, Ferroelectric nanogap-based steep-slope ambipolar transistor, Small, 18(48) (2022).
[71] K. F. Dong, et al, Current-induced magnetic switching in an Ll0 FePt single layer with large perpendicular anisotropy through spin-orbit torque, Engineering-PRC, 12, 55-61 (2022).
[72] Y. J. Hui, et al, Maximizing spin Hall magnetoresistance in heavy metal/crystalline metallic ferromagnet multilayers with opposite spin Hall angles, Nanoscale, 15(2), 820-827 (2022).
[73] L. Hu, et al, Spin filtering effect, thermal spin diode effect and high tunneling magnetoresistance in the Au/GdI2/Au van der Waals junction, Nanoscale, 14(21) , 7891-7897 (2022).
[74] F. Chen, et al, Optically controlled femtosecond polariton switch at room temperature, Phys. Rev. Lett., 129(5), 057402 (2022).