论文标题
单层1T键$ _2 $的钴原子中的Spinon Kondo效应的证据
Evidence for a spinon Kondo effect in cobalt atoms on single-layer 1T-TaSe$_2$
论文作者
论文摘要
量子自旋液体(QSL)是高度纠缠的,无序的磁状态,在沮丧的莫特绝缘子和宿主的外来分数激发(例如纺纱弹)中产生。尽管是电荷绝缘子,但预计仍有一些QSL表现出无间隙的巡回旋转子,在自旋通道中产生金属行为。我们已经将隔离的磁原子沉积到单层(SL)1T键$ _2 $(无间隙QSL候选者)上,以实验探测巡回旋转的蜘蛛对夫妇的杂质旋转中心。使用扫描隧道光谱法,我们观察到新的,杂质诱导的共振峰在1T键$ _2 $ hubbard带边缘的出现时,当钴空位定位为具有最大的空间与Hubbard带电荷分布具有最大的空间重叠。当空间重叠减少或用非磁性杂质代替磁性杂质时,这些共振峰消失了。理论模拟使用与无间隙量子自旋液体集成的改良的安德森杂质模型,表明这些谐振峰与由蜘蛛网诱导的近托共振一致,并与Spinon-Chargon结合效应结合了QSL仪表仪量规稳定性。
Quantum spin liquids (QSLs) are highly entangled, disordered magnetic states that arise in frustrated Mott insulators and host exotic fractional excitations such as spinons and chargons. Despite being charge insulators some QSLs are predicted to exhibit gapless itinerant spinons that yield metallic behavior in the spin channel. We have deposited isolated magnetic atoms onto single-layer (SL) 1T-TaSe$_2$, a gapless QSL candidate, to experimentally probe how itinerant spinons couple to impurity spin centers. Using scanning tunneling spectroscopy we observe the emergence of new, impurity-induced resonance peaks at the 1T-TaSe$_2$ Hubbard band edges when cobalt adatoms are positioned to have maximal spatial overlap with the Hubbard band charge distribution. These resonance peaks disappear when the spatial overlap is reduced or when the magnetic impurities are replaced with non-magnetic impurities. Theoretical simulations using a modified Anderson impurity model integrated with a gapless quantum spin liquid show that these resonance peaks are consistent with a Kondo resonance induced by spinons combined with spinon-chargon binding effects that arise due to QSL gauge-field fluctuations.