论文标题
部分可观测时空混沌系统的无模型预测
Dipolar spin ice regime proximate to an all-in-all-out Néel ground state in the dipolar-octupolar pyrochlore Ce$_2$Sn$_2$O$_7$
论文作者
论文摘要
The dipolar-octupolar (DO) pyrochlores, R$_2$M$_2$O$_7$ (R = Ce, Sm, Nd), are key players in the search for realizable novel quantum spin liquid (QSL) states as a large parameter space within the DO pyrochlore phase diagram is theorized to host QSL states of both dipolar and octupolar nature.由Hydrothermal Techniques合成的新型CE $ _2 $ _2 $ SN $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $利用量子数值链接的聚类扩展与热容量和磁化易感性测量以及经典的蒙特卡洛计算,计算出新的Hydrothermally Ce $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ o $ $ o $ $ _7 $样品的弥漫性中子衍射,我们plact ce Néel阶段,带有量子蒙特卡洛计算,显示了低于实验访问的温度下的远程顺序的过渡。实际上,我们对水热种植的新中子衍射测量$ _2 $ _2 $ sn $ _2 $ _2 $ o $ _7 $粉末在低散射波矢量处显示出广泛的信号,让人联想到\ textit {dipolar}旋转冰,在与先前的粉末中散布的散布相关的散布的散布,从而发现了较差的散布,从而发现了与固体散布相关的差异,该散布散布了,该散布既定,从而散布了,该散布是在较低的范围磁{\ it Octupoles},并提出了八度量子自旋冰状态。我们得出的结论是,新的水热种植CE $ _2 $ sn $ _2 $ o $ _7 $样品容纳有限的近端偶性旋转冰阶段,而不是预期过渡到Aiaonéel订单。
The dipolar-octupolar (DO) pyrochlores, R$_2$M$_2$O$_7$ (R = Ce, Sm, Nd), are key players in the search for realizable novel quantum spin liquid (QSL) states as a large parameter space within the DO pyrochlore phase diagram is theorized to host QSL states of both dipolar and octupolar nature. New single crystals and powders of Ce$_2$Sn$_2$O$_7$, synthesized by hydrothermal techniques, present an opportunity for a new characterization of the exchange parameters in Ce$_2$Sn$_2$O$_7$ using the near-neighbor $XYZ$ model Hamiltonian associated with DO pyrochlores. Utilizing quantum numerical linked cluster expansion fits to heat capacity and magnetic susceptibility measurements, and classical Monte Carlo calculations to the diffuse neutron diffraction of the new hydrothermally grown Ce$_2$Sn$_2$O$_7$ samples, we place Ce$_2$Sn$_2$O$_7$'s ground state within the ordered dipolar all-in-all-out (AIAO) Néel phase, with quantum Monte Carlo calculations showing a transition to long-range order at temperatures below those accessed experimentally. Indeed, our new neutron diffraction measurements on the hydrothermally grown Ce$_2$Sn$_2$O$_7$ powders show a broad signal at low scattering wave vectors, reminiscent of a \textit{dipolar} spin ice, in striking contrast from previous powder neutron diffraction on samples grown from solid-state synthesis, which found diffuse scattering at high scattering wave vectors associated with magnetic {\it octupoles} and suggested an octupolar quantum spin ice state. We conclude that new hydrothermally grown Ce$_2$Sn$_2$O$_7$ samples host a finite-temperature proximate dipolar spin ice phase, above the expected transition to AIAO Néel order.