Z 3 -vestigial nematic order due to superconducting fluctuations in the doped topological insulators Nb x Bi 2 Se 3 and Cu x Bi 2 Se 3

NATURE COMMUNICATIONS(2020)

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摘要
state of matter with a multi-component order parameter can give rise to vestigial order. In the vestigial phase, the primary order is only partially melted, leaving a remaining symmetry breaking behind, an effect driven by strong classical or quantum fluctuations. Vestigial states due to primary spin and charge-density-wave order have been discussed in iron-based and cuprate materials. Here we present the observation of a partially melted superconductivity in which pairing fluctuations condense at a separate phase transition and form a nematic state with broken Z 3 , i.e., three-state Potts-model symmetry. Thermal expansion, specific heat and magnetization measurements of the doped topological insulators Nb x Bi 2 Se 3 and Cu x Bi 2 Se 3 reveal that this symmetry breaking occurs at T_nem≃ 3.8 K above T_c≃ 3.25 K , along with an onset of superconducting fluctuations. Thus, before Cooper pairs establish long-range coherence at T c , they fluctuate in a way that breaks the rotational invariance at T nem and induces a crystalline distortion.
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关键词
Superconducting properties and materials,Topological matter,Science,Humanities and Social Sciences,multidisciplinary
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