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Emergent bound states and impurity pairs in chemically doped Shastry-Sutherland system

机译:化学掺杂的Shastry-Sutherland系统中的紧急结合态和杂质对

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摘要

Impurities often play a defining role in the ground states of frustrated quantum magnets. Studies of their effects are crucial in understanding of the phase diagram in these materials. SrCu2(BO3)2, an experimental realization of the Shastry-Sutherland (SS) lattice, provides a unique model system for such studies using both experimental and numerical approaches. Here we report effects of impurities on the crystals of bound states, and doping-induced emergent ground states in Mg-doped SrCu2(BO3)2, which remain stable in high magnetic fields. Using four complementary magnetometry techniques and theoretical simulations, a rich impurity-induced phenomenology at high fields is discovered. The results demonstrate a rare example in which even a small doping concentration interacts strongly with both triplets and bound states of triplets, and thus plays a significant role in the magnetization process even at high magnetic fields. Our findings provide insights into the study of impurity effects in geometrically frustrated quantum magnets.
机译:杂质通常在受挫的量子磁体的基态中起决定性作用。研究它们的作用对于理解这些材料中的相图至关重要。 SrCu2(BO3)2是Shastry-Sutherland(SS)晶格的实验实现,它使用实验和数值方法为此类研究提供了独特的模型系统。在这里,我们报告了杂质对Mg掺杂SrCu2(BO3)2中键合态晶体和掺杂诱导的出现基态的影响,它们在高磁场中保持稳定。使用四种互补的磁力技术和理论模拟,发现了高磁场下丰富的杂质诱发现象学。结果证明了一个罕见的例子,其中即使很小的掺杂浓度也能与三重态和三重态的结合状态强烈相互作用,因此即使在高磁场下也能在磁化过程中发挥重要作用。我们的发现为研究几何受阻的量子磁体中的杂质效应提供了见识。

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