期刊文献+
共找到1篇文章
< 1 >
每页显示 20 50 100
Magnetic field effects on the quantum spinliquid behaviors of NaYbS_(2) 被引量:2
1
作者 Jiangtao Wu Jianshu Li +23 位作者 Zheng Zhang Changle Liu Yong Hao Gao Erxi Feng Guochu Deng Qingyong Ren Zhe Wang Rui Chen Jan Embs Fengfeng Zhu Qing Huang Ziji Xiang Lu Chen Yan Wu E.S.Choi Zhe Qu Lu Li Junfeng Wang Haidong Zhou Yixi Su Xiaoqun Wang Gang Chen Qingming Zhang Jie Ma 《Quantum Frontiers》 2022年第1期106-113,共8页
Spin-orbit coupling is an important ingredient to regulate the many-body physics,especially for many spin liquid candidate materials such as rare-earth magnets and Kitaev materials.The rare-earth chalcogenides NaYbCh_... Spin-orbit coupling is an important ingredient to regulate the many-body physics,especially for many spin liquid candidate materials such as rare-earth magnets and Kitaev materials.The rare-earth chalcogenides NaYbCh_(2)(Ch=O,S,Se)is a congenital frustrating system to exhibit the intrinsic landmark of spin liquid by eliminating both the site disorders between Na+and Yb^(3+)ions with the big ionic size difference and the Dzyaloshinskii-Moriya interaction with the perfect triangular lattice of the Yb^(3+)ions.The temperature versus magnetic-field phase diagram is established by the magnetization,specific heat,and neutron-scattering measurements.Notably,the neutron diffraction spectra and the magnetization curve might provide microscopic evidence for a series of spin configuration for in-plane fields,which include the disordered spin liquid state,120°antiferromagnet,and one-half magnetization state.Furthermore,the ground state is suggested to be a gapless spin liquid from inelastic neutron scattering,and the magnetic field adjusts the spin orbit coupling.Therefore,the strong spin-orbit coupling in the frustrated quantum magnet substantially enriches low-energy spin physics.This rare-earth family could offer a good platform for exploring the quantum spin liquid ground state and quantum magnetic transitions. 展开更多
关键词 naybch kitaev materialsthe magnetic field MAGNETIZATION spin liquid quantum spin liquid spin orbit coupling neutron scattering
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部