论文标题

杂质引起的谐振旋子零模式在狄拉克量子自旋液体中

Impurity-induced resonant spinon zero modes in Dirac quantum spin-liquids

论文作者

Chen, Guangze, Lado, J. L.

论文摘要

量子自旋液体是物质的强相关阶段,显示高度纠缠的基态。由于其非常规的性质,发现这些州的实验签名已被证明是一个非凡的挑战。在这里,我们表明,局部杂质的影响可以提供Dirac量子自旋状态的强签名。专注于Naybo $ _2 $中实现的无间隙dirac量子自旋状态,我们表明,与量子自旋式液态状态耦合的单个磁性杂质在零频率下产生共鸣的Spinon峰,并共存原始的Dirac Spinons。我们探讨了这种零偏置共振的空间依赖性,并展示了不同的零模式如何源于几种杂质的干扰。最后,我们解决了如何使用非弹性光谱和电动驱动的顺磁共振通过扫描隧道显微镜进行实验探测的零模式共振。我们的结果提出了杂质工程,作为使用扫描探针技术鉴定狄拉克量子自旋液体的一种手段,突出了磁杂质在宏观纠缠的多体基地状态下的巨大影响。

Quantum spin-liquids are strongly correlated phases of matter displaying a highly entangled ground state. Due to their unconventional nature, finding experimental signatures of these states has proven to be a remarkable challenge. Here we show that the effects of local impurities can provide strong signatures of a Dirac quantum spin-liquid state. Focusing on a gapless Dirac quantum spin-liquid state as realized in NaYbO$_2$, we show that single magnetic impurity coupled to the quantum spin-liquid state creates a resonant spinon peak at zero frequency, coexisting the original Dirac spinons. We explore the spatial dependence of this zero-bias resonance, and show how different zero modes stemming from several impurities interfere. We finally address how such spinon zero-mode resonances can be experimentally probed with inelastic spectroscopy and electrically-driven paramagnetic resonance with scanning tunnel microscopy. Our results put forward impurity engineering as a means of identifying Dirac quantum spin-liquids with scanning probe techniques, highlighting the dramatic impact of magnetic impurities in a macroscopically entangled many-body ground state.

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