论文标题

通过反常的拉曼散射探测候选量子自旋液体CU2IRO3中分数化的特征

Probing signatures of fractionalization in candidate quantum spin liquid Cu2IrO3 via anomalous Raman scattering

论文作者

Pal, Srishti, Seth, Arnab, Sakrikar, Piyush, Ali, Anzar, Bhattacharjee, Subhro, Muthu, D. V. S., Singh, Yogesh, Sood, A. K.

论文摘要

量子自旋液体(QSL)中的远距离纠缠导致新型的低能激励,并具有分数化的量子数和(以2D)统计。对这些激发的实验检测和操纵,尤其是鉴于各种候选磁铁的挑战。分数化的有希望的探测是它们与声子耦合。在这里,我们提出了S = 1/2 Honeycomb Iriate Cu2iro3的拉曼散射结果,这是一种候选的Kitaev QSL,具有分数化的Majorana Fermions和Ising Flux激发。我们观察到反常的低温频移和拉曼强度的线宽扩大,除了宽阔的磁连续性,我们得出的这两个磁连续性都自然归因于声子衰减到巡回的majortianta。动态拉曼的敏感性标志着〜120 k处的QSL到热paramagnet的交叉。该温度以下的声子异常表明了强烈的声子 - 马霍拉纳耦合。这些结果提供了CU2IRO3中自旋分数化的证据。

Long-range entanglement in quantum spin liquids (QSLs) lead to novel low energy excitations with fractionalised quantum numbers and (in 2D) statistics. Experimental detection and manipulation of these excitations present a challenge particularly in view of diverse candidate magnets. A promising probe of fractionalisation is their coupling to phonons. Here we present Raman scattering results for the S = 1/2 honeycomb iridate Cu2IrO3, a candidate Kitaev QSL with fractionalised Majorana fermions and Ising flux excitations. We observe anomalous low temperature frequency shift and linewidth broadening of the Raman intensities in addition to a broad magnetic continuum both of which, we derive, are naturally attributed to the phonon decaying into itinerant Majoranas. The dynamic Raman susceptibility marks a crossover from the QSL to a thermal paramagnet at ~120 K. The phonon anomalies below this temperature demonstrate a strong phonon-Majorana coupling. These results provide for evidence of spin fractionalisation in Cu2IrO3.

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