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Possible spin-polarized Cooper pairing in high temperature FeSe superconductor

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arxiv 2405.10482 v1 pith:LQMV2NNR submitted 2024-05-17 cond-mat.supr-con

classification cond-mat.supr-con
keywords temperatureferromagnetismsuperconductivitycoexistencecooperfesehighspin-polarized
verification ladder T0 review T1 audit T2 compute T3 formal
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Superconductivity and long-range ferromagnetism hardly coexist in a uniform manner. The counter-example has been observed, in uranium-based superconductors for instance, with a coexisting temperature limited to about 1 K. Here, we report the coexistence of high temperature superconductivity and itinerant ferromagnetism in lithium intercalated FeSe flakes. In superconducting samples with transition temperature around 40 K, we observe the anomalous Hall effect with a hysteresis loop in transverse resistivity and a butterfly-like pattern of magneto-resistance. Intriguingly, such ferromagnetism persists down to a temperature at which the zero-field resistance fully vanishes. Furthermore, the superconductivity is enhanced under an in-plane magnetic field, suggestive of the participation of spin-polarized Cooper pairs. The surprising finding underscores a uniform coexistence of the two antagonistic phenomena on a record-high energy scale.

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