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量子自旋液体的实验研究进展
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作者 马祯 冉柯静 +5 位作者 王靖珲 鲍嵩 蔡正蔚 上官艳艳 司文达 温锦生 《物理学进展》 CSCD 北大核心 2019年第5期153-172,共20页
量子自旋液体是指由于其中存在的强量子涨落导致自旋即使在零温极限下也不形成磁有序的一种新的自旋量子态.区别于传统的磁有序材料,它的基态没有确定的序参量来表示,并且不伴随任何自发的对称性破缺,超越了朗道相变理论所能描述的物相... 量子自旋液体是指由于其中存在的强量子涨落导致自旋即使在零温极限下也不形成磁有序的一种新的自旋量子态.区别于传统的磁有序材料,它的基态没有确定的序参量来表示,并且不伴随任何自发的对称性破缺,超越了朗道相变理论所能描述的物相范畴,代表了一种新奇的量子物态,具有非常高的理论研究价值.这一全新的物态被认为与非常规超导机制之间有着十分紧密的关系.同时在未来的量子计算方面有着非常诱人的应用前景,因此一直以来备受关注.虽然量子自旋液体理论经过近半个世纪的积淀有了长足的发展,但是由于候选材料稀少,实验测量条件苛刻等多种因素制约,导致实验方面的进展相对缓慢.近年来各项实验技术的进步和成熟为量子自旋液体候选材料的测量表征提供了有利条件,加快了实验工作的推进速度.本文将从实验的角度介绍(1)几何阻挫量子自旋液体候选材料,包括三角晶格化合物YbMgGaO4和YbZnGaO4、κ-(BEDT-TTF)2Cu2(CN)3、EtMe3Sb[Pd(dmit)2]2和kagomé格子化合物ZnCu3(OH)6Cl2;(2) Kitaev量子自旋液体候选材料铱氧化物(Na2IrO3与α-,β-,γ-Li2IrO3)和α-RuCl3.文章将着重介绍近年来在量子自旋液体实验方面的进展,之后做一个简单的总结,最后对量子自旋液体的未来发展做一个展望. 展开更多
关键词 量子自旋液体 量子涨落 磁无序 几何阻挫 Kitaev 自旋液体
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Evidence for Magnetic Fractional Excitations in a Kitaev Quantum-Spin-Liquid Candidate α-RuCl_(3)
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作者 冉柯静 王靖珲 +12 位作者 鲍嵩 蔡正蔚 上官艳艳 马祯 王巍 董召阳 P.Cermak A.Schneidewind 孟思勤 陆智伦 于顺利 李建新 温锦生 《Chinese Physics Letters》 SCIE EI CAS CSCD 2022年第2期72-77,共6页
It is known that α-RuCl_(3) has been studied extensively because of its proximity to the Kitaev quantum-spin-liquid(QSL)phase and the possibility of approaching it by tuning the competing interactions.Here we present... It is known that α-RuCl_(3) has been studied extensively because of its proximity to the Kitaev quantum-spin-liquid(QSL)phase and the possibility of approaching it by tuning the competing interactions.Here we present the first polarized inelastic neutron scattering study on α-RuCl_(3) single crystals to explore the scattering continuum around the Γ point at the Brillouin zone center,which was hypothesized to be resulting from the Kitaev QSL state but without concrete evidence.With polarization analyses,we find that,while the spin-wave excitations around the Γ point vanish above the transition temperature T_(N),the pure magnetic continuous excitations around the Γ point are robust against temperature.Furthermore,by calculating the dynamical spin-spin correlation function using the cluster perturbation theory,we derive magnetic dispersion spectra based on the K-Γ model,which involves with a ferromagnetic Kitaev interaction of −7.2 meV and an off-diagonal interaction of 5.6 meV.We find this model can reproduce not only the spin-wave excitation spectra around the Γ point,but also the non-spin-wave continuous magnetic excitations around the Γ point.These results provide evidence for the existence of fractional excitations around the Γ point originating from the Kitaev QSL state,and further support the validity of the K-Γ model as the effective minimal spin model to describe α-RuCl_(3). 展开更多
关键词 temperature EXCITATION DIAGONAL
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Recent progress on magnetic-field studies on quantum-spin-liquid candidates
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作者 马祯 冉柯静 +4 位作者 王靖珲 鲍嵩 蔡正蔚 李世超 温锦生 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第10期1-14,共14页
Quantum spin liquids(QSLs) represent a novel state of matter in which quantum fluctuations prevent the conventional magnetic order from being established, and the spins remain disordered even at zero temperature. Th... Quantum spin liquids(QSLs) represent a novel state of matter in which quantum fluctuations prevent the conventional magnetic order from being established, and the spins remain disordered even at zero temperature. There have been many theoretical developments proposing various QSL states. On the other hand, experimental movement was relatively slow largely due to limitations on the candidate materials and difficulties in the measurements. In recent years, the experimental progress has been accelerated. In this topical review, we give a brief summary of experiments on the QSL candidates under magnetic fields. We arrange our discussions by two categories: i) Geometrically-frustrated systems, including triangularlattice compounds YbMgGaO4 and YbZnGaO4, κ-(BEDT-TTF)2 Cu2(CN)3, and EtMe3 Sb[Pd(dmit)2]2, and the kagom′e system ZnCu3(OH)6 Cl2; ii) the Kitaev material α-RuCl3. Among these, we will pay special attention to α-RuCl3, which has been intensively studied by ours and other groups recently. We will present evidence that both supports and rejects the QSL ground state for these materials, based on which we give several perspectives to stimulate further research activities. 展开更多
关键词 quantum spin liquids spin glass neutron scattering
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