Itinerant Topological Magnons in SU(2) Symmetric Topological Hubbard Models with Nearly Flat Electronic Bands. Magnus Hall Effect in Two-Dimensional Materials. Rui-Chun Xiao, Zibo Wang, Zhi-Qiang Zhang, Junwei Liu, and Hua Jiang. Topological Knots in Quantum Spin Systems. High-Performance Visible Light Photodetector Based on BiSeI Single Crystal. Xiu Yan, Wei-Li Zhen, Hui-Jie Hu, Li Pi, Chang-Jin Zhang, and Wen-Ka Zhu. Concurrent Structural and Electronic Phase Transitions in V$_2$O$_3$ Thin Films with Sharp Resistivity Change. Starting from the Dirac equation, a g-factor g 2 has been deduced for a neutrino in. The gravitomagnetic moment, i.e., the magnetic moment from gravitational origin, may contain different g-factors for the massive neutrino eigenstates m 1, m 2 and m 3, respectively. Neutrino magnetic moment in a minimal ex- tension of Standard Model. There- fore, neutrino magnetic moments can be used to distinguish Dirac and Majorana neutrinos (see 3 and also 2 for a detailed discussion). Lett., 2021, 38(7):Ĭhuang Xie, Ling Hu, Ran-Ran Zhang, Shun-Jin Zhu, Min Zhu, Ren-Huai Wei, Xian-Wu Tang, Wen-Hai Song, Xue-Bin Zhu, and Yu-Ping Sun. magnetic moment can be combined, yielding the value of the neutrino mass. For a Majorana neutrino the diagonal magnetic and electric moments are zero. magnetic moment and the electric dipole moment, neutrino factories based on a muon. Generalized Rashba Coupling Approximation to a Resonant Spin Hall Effect of the Spin–Orbit Coupling System in a Magnetic Field. Ultrahot plasma is a source of neutrinos in stars in the final V. Rui Zhang, Yuan-Chuan Biao, Wen-Long You, Xiao-Guang Wang, Yu-Yu Zhang, and Zi-Xiang Hu. Exact Solution of a Non-Hermitian Generalized Rabi Model. Coexistence of Charge Order and Antiferromagnetic Order in an Extended Periodic Anderson Model. ![]() Yanting Li , Bixia Gao , Qiyu Wang , Juan Zhang , and Qiaoni Chen. Learning the Effective Spin Hamiltonian of a Quantum Magnet. Sizhuo Yu, Yuan Gao, Bin-Bin Chen, and Wei Li. Nonlocal Effects of Low-Energy Excitations in Quantum-Spin-Liquid Candidate Cu$_3$Zn(OH)$_6$FBr. The properties of the so-far existing low-background Ge spectrometers are discussed, and additional sources of background in a reactor experiment at a small depth are estimated. Yuan Wei, Xiaoyan Ma, Zili Feng, Yongchao Zhang, Lu Zhang, Huaixin Yang, Yang Qi, Zi Yang Meng, Yan-Cheng Wang, Youguo Shi, and Shiliang Li. We analyze the possibility of using a low-background Ge-NaI spectrometer in a reactor experiment aimed at searches for the neutrino magnetic moment down to 3 × 10-11 of the electron magneton. The XENON1T experiment recently detected an excess of electron recoil events in the 1–7 keV energy range, which can be compatible with solar neutrino magnetic moment interaction at a most probable value of $\mu_$ Observation at LHCb. Joachim Kopp (CERN, Mainz U.) Abstract: We revisit the physics of neutrino magnetic moments, focusing in particular on the case where the right. Abstract Non-vanishing electromagnetic properties of neutrinos have been predicted by many theories beyond the Standard Model, and an enhanced neutrino magnetic moment can have profound implications for fundamental physics.
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