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Low temperature magnetism in the rare-earth perovskite GdScO3 被引量:1
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作者 Jie-Ming Sheng Xu-Cai Kan +10 位作者 Han Ge Pei-Qian Yuan Lei Zhang Nan Zhao Zong-Mei Song Yuan-Yin Yao Ji-Ning Tang Shan-Min Wang Ming-Liang Tian Xin Tong Liu-Suo Wu 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第5期47-51,共5页
The magnetic phase diagram of rare-earth perovskite compound,GdScO3,has been investigated by magnetization and heat capacity.The system undergoes an antiferromagnetic phase transition at TN=2.6 K,with an easy axis of ... The magnetic phase diagram of rare-earth perovskite compound,GdScO3,has been investigated by magnetization and heat capacity.The system undergoes an antiferromagnetic phase transition at TN=2.6 K,with an easy axis of magnetization along the a axis.The magnetization measurements show that it exists a spin-flop transition around 0.3 T for the applied field along the a axis.The critical magnetic field for the antiferromagnetic-to-paramagnetic transition is near 3.2 T when temperature approaches zero.By scaling susceptibilities,we presume this point(B=3.2 T,T=0 K)might be a fieldinduced quantum critical point and the magnetic critical fluctuations can even be felt above TN. 展开更多
关键词 rare-earth perovskite MAGNETIZATION spin-flop transition quantum critical point
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High-Pressure Single-Crystal Neutron Scattering Study of Magnetic and Fe Vacancy Orders in (T1,Rb):Fe4Se5 Superconductor 被引量:2
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作者 叶峰 鲍威 +8 位作者 池松雪 Antonio M. dos Santos Jamie J. Molaison 方明虎 王杭栋 毛乾辉 汪晋辰 刘娟娟 盛洁明 《Chinese Physics Letters》 SCIE CAS CSCD 2014年第12期111-114,共4页
The recently discovered metal-intercalated iron selenide superconductors A2Fe4Se5 (A=K, Cs, T1- K, Rb, T1-Rb) (245) compounds, with Tc ~30K, have attracted much interest A high transition- temperature (TN ≈ 470... The recently discovered metal-intercalated iron selenide superconductors A2Fe4Se5 (A=K, Cs, T1- K, Rb, T1-Rb) (245) compounds, with Tc ~30K, have attracted much interest A high transition- temperature (TN ≈ 470-560K) and large magnetic moment (3.3μB/Fe) block antiferromagnetic (AFM) order exists in the superconducting samples. Mag- netic order-parameter experiences an anomaly when Tc is approached. The superconductors crystal- lize with a highly ordered √5 × √5 superstructure, in which the Fel site of the I4/m structure is only a few percents occupied and the Fe2 site is fully occupied. The non-superconducting samples at low-T also crystallize in the I4/m structure, while both Fe sites are fractionally occupied, since the numbers of the Fe vacancies in the samples and the vacant sites in the √5 × √5 pattern are mismatched. The partially ordered √5× √5 vacancy order becomes one of three competing phases for temperature below room temperature up to ~ 500K, namely, these sam- ples are phase-separated and in the miscibility gap 1lacier the n,mhi^nt condition. 展开更多
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A Single-Crystal Neutron Diffraction Study on Magnetic Structure of the Quasi-One-Dimensional Antiferromagnet SrCo_2V_2O_8
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作者 刘娟娟 汪晋辰 +4 位作者 罗伟 盛洁明 何长振 S.A.Danilkin 鲍威 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第3期111-114,共4页
The magnetic structure of the spin-chain antiferromagnet SrCo2 V208 is determined by single-crystal neutron diffraction experiment. The system undergoes a long-range magnetic order below the critical temperature TN=4.... The magnetic structure of the spin-chain antiferromagnet SrCo2 V208 is determined by single-crystal neutron diffraction experiment. The system undergoes a long-range magnetic order below the critical temperature TN=4.96 K. The moment of 2.16#B per Co at 1.6K in the screw chain running along the c axis Mternates in the c axis. The moments of neighboring screw chains are arranged antiferromagnetically along one in-plane axis and ferromagnetieally Monk the other in-plane axis. This magnetic configuration breaks the four-fold symmetry of the tetragonM crystal structure and leads to two equally populated magnetic twins with the antiferromagnetic vector in the a or b axis. The very similar magnetic state to the isostructural BaCo2 V~ 08 warrants SrCo2 V2 08 as another interesting half-integer spin-chain antiferromagnet for investigation on quantum antiferromagnetism. 展开更多
关键词 in ET IS of A Single-Crystal Neutron Diffraction Study on Magnetic Structure of the Quasi-One-Dimensional Antiferromagnet SrCo2V2O8 for on
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A single-crystal neutron diffraction study on magnetic structure of CsCo_2Se_2
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作者 Juanjuan Liu Jieming Sheng +5 位作者 Wei Luo1 Jinchen Wang Wei Bao Jinhu Yang Minghu Fang S A Danilkin 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第11期372-376,共5页
The magnetic structure of CsCo_2 Se_2 was investigated using single-crystal neutron diffraction technique. An antiferromagnetic transition with the propagation vector(0,0,1) was observed at TN= 78 K. The Co magnetic... The magnetic structure of CsCo_2 Se_2 was investigated using single-crystal neutron diffraction technique. An antiferromagnetic transition with the propagation vector(0,0,1) was observed at TN= 78 K. The Co magnetic moment 0.772(6) μB at 10 K pointing in the basal plane couples ferromagnetically in the plane, which stacks antiferromagnetically along the c direction. Tuning and suppressing the interplane antiferromagnetic interaction may be crucial to induce a superconducting state in the material. 展开更多
关键词 neutron diffraction magnetic structure SUPERCONDUCTIVITY
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Chiral Dirac Fermion in a Collinear Antiferromagnet
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作者 张奥 邓可 +19 位作者 盛洁明 刘鹏飞 Shiv Kumar Kenya Shimada 江志诚 刘正太 沈大伟 李嘉裕 任俊 王乐 周良 Yoshihisa Ishikawa Takashi Ohhara Qiang Zhang Garry McIntyre Dehong Yu 刘恩克 吴留锁 陈朝宇 刘奇航 《Chinese Physics Letters》 SCIE EI CAS CSCD 2023年第12期84-91,共8页
In a Dirac semimetal, the massless Dirac fermion has zero chirality, leading to surface states connected adiabatically to a topologically trivial surface state as well as vanishing anomalous Hall effect. Recently, it ... In a Dirac semimetal, the massless Dirac fermion has zero chirality, leading to surface states connected adiabatically to a topologically trivial surface state as well as vanishing anomalous Hall effect. Recently, it is predicted that in the nonrelativistic limit of certain collinear antiferromagnets, there exists a type of chiral“Dirac-like” fermion, whose dispersion manifests four-fold degenerate crossing points formed by spin-degenerate linear bands, with topologically protected Fermi arcs. Such an unconventional chiral fermion, protected by a hidden SU(2) symmetry in the hierarchy of an enhanced crystallographic group, namely spin space group, is not experimentally verified yet. Here, by angle-resolved photoemission spectroscopy measurements, we reveal the surface origin of the electron pocket at the Fermi surface in collinear antiferromagnet CoNb3S6. Combining with neutron diffraction and first-principles calculations, we suggest a multidomain collinear antiferromagnetic configuration, rendering the the existence of the Fermi-arc surface states induced by chiral Dirac-like fermions.Our work provides spectral evidence of the chiral Dirac-like fermion caused by particular spin symmetry in CoNb_(3)S_(6), paving an avenue for exploring new emergent phenomena in antiferromagnets with unconventional quasiparticle excitations. 展开更多
关键词 FERMI DIRAC CHIRAL
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非弹性中子散射在稀土钙钛矿研究中的应用 被引量:3
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作者 盛洁明 童欣 吴留锁 《物理》 CAS 北大核心 2019年第12期800-807,共8页
中子散射技术在科学研究中应用的重要性、独特性源自于中子本身的一些基本物理特点:带自旋、不带电荷、与原子核直接发生强相互作用、恰当的质量使其色散关系与一般物质内部的原子振动和磁性振动的元激发相当,以及可用于无损探测的强穿... 中子散射技术在科学研究中应用的重要性、独特性源自于中子本身的一些基本物理特点:带自旋、不带电荷、与原子核直接发生强相互作用、恰当的质量使其色散关系与一般物质内部的原子振动和磁性振动的元激发相当,以及可用于无损探测的强穿透性等。这些特点决定了中子散射探测技术在科学研究中无可替代的重要地位。经过多年发展,中子散射技术已经成为研究凝聚态物理中材料晶体结构以及磁结构的主要手段。此外由于中子的能量与物质中的元激发,如声子,磁振子等能量相当,中子散射也是研究物质动力学性质不可替代的关键技术。对于磁性材料来说,非弹性中子散射不仅可以研究对称性破缺下磁有序相的自旋波激发,而且可以直接探测无对称性破缺情况下的自旋关联。这对于研究磁阻挫等量子磁体中新奇的量子化自旋激发尤其重要。文章将主要介绍两种常用的非弹性散射谱仪,并结合最近在稀土钙钛矿结构体系中的具体应用,尤其是低维稀土自旋链中的分数化自旋子的激发,重点介绍非弹性散射技术的特色。 展开更多
关键词 非弹性中子散射 稀土钙钛矿氧化物 磁性材料 自旋激发
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