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Quantum Excitations in Quantum Spin Ice

机译:量子自旋冰中的量子激发

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Recent work has highlighted remarkable effects of classical thermal fluctuations in the dipolar spin ice compounds, such as “artificial magnetostatics,” manifesting as Coulombic power-law spin correlations and particles behaving as diffusive “magnetic monopoles.” In this paper, we address quantum spin ice, giving a unifying framework for the study of magnetism of a large class of magnetic compounds with the pyrochlore structure, and, in particular, discuss Yb2Ti2O7, and extract its full set of Hamiltonian parameters from high-field inelastic neutron scattering experiments. We show that fluctuations in Yb2Ti2O7 are strong, and that the Hamiltonian may support a Coulombic “quantum spin liquid” ground state in low magnetic fields and host an unusual quantum critical point at larger fields. This appears consistent with puzzling features seen in prior experiments on Yb2Ti2O7. Thus, Yb2Ti2O7 is the first quantum spin liquid candidate for which the Hamiltonian is quantitatively known.
机译:最近的工作强调了偶极自旋冰化合物中经典热涨落的显着影响,例如“人工静磁”,表现为库仑幂律自旋相关性,并且粒子表现为扩散的“磁性单极子”。在本文中,我们讨论了量子自旋冰,为研究具有烧绿石结构的大量磁性化合物的磁性提供了一个统一的框架,特别是讨论了Yb2Ti2O7,并从高铁中提取了其全套哈密顿参数。场非弹性中子散射实验。我们表明,Yb2Ti2O7的波动很大,哈密顿量可能在低磁场中支持库仑“量子自旋液体”基态,并在较大的磁场中具有不寻常的量子临界点。这似乎与先前在Yb2Ti2O7上的实验中看到的令人费解的功能一致。因此,Yb2Ti2O7是哈密顿量已知的第一个量子自旋液体候选物。

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