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Intertwined Spin and Orbital Density Waves in MnP Uncovered by Resonant Soft X-Ray Scattering

机译:通过谐振软X射线散射揭示的MNP中的旋转和轨道密度波

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Unconventional superconductors are often characterized by numerous competing and even intertwined orders in their phase diagrams. The fluctuations associated with these orders may provide the exotic pairing glue that underlies their high-temperature superconductivity. Helimagnet MnP, the first Mn-based superconductor under pressure, lacks high rotational symmetry. However, our resonant soft x-ray scattering experiment discovers novel helical orbital density wave (ODW) orders in MnP and reveals intertwined ordering phenomena. In particular, an ODW forms with half the period of the spin order and fully develops slightly above the spin ordering temperature, which resembles the behaviors of the nematic phase of the iron-based superconductors. Moreover, we find that their domains develop simultaneously, yet the spin order domains are larger than those of the ODW; and they cooperatively produce another ODW with 1 / 3 the period of the spin order. These observations provide a comprehensive picture of the intertwined orders in this three-dimensional, low-symmetry system and shed light on the understanding of its superconducting mechanism.
机译:非传统超导体通常在其相图中的众多竞争甚至交织的订单。与这些订单相关的波动可以提供极其配对胶水,该胶质胶质胶质胶质粘附到其高温超导性。 Helimagnet MNP,压力下的第一个Mn基超导体缺乏高旋转对称性。然而,我们的共振软X射线散射实验发现了MNP中的新型螺旋轨道密度波(ODW)订单,并揭示了交织的排序现象。特别地,具有旋转顺序的一半的ODW形式,并且完全发展略高于自旋排序温度,其类似于铁基超导体的向志相的行为。此外,我们发现他们的域同时发展,但旋转顺序域大于ODW的域;并且它们合作地使用旋转顺序的一个/ 3时产生另一个ODW。这些观察结果提供了在这三维低对称系统中交织订单的综合了解,并阐明了对其超导机制的理解。

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