论文标题
在FESE的高压阶段,强烈的Cu杂质散射引起的强大超导性和脆弱的磁性
Robust superconductivity and fragile magnetism induced by the strong Cu impurity scattering in the high-pressure phase of FeSe
论文作者
论文摘要
在施加的压力下,FESE中的超导性得到了强烈的增强,并提出从异常耦合的结构和磁相中出现。 Fe平面内部的小杂质会在环境压力下强烈破坏FESE中的对成对形成,也可以揭示正常和超导相之间的相互作用。在这里,我们调查了CU取代引起的Fe平面内部的杂质如何改变FESE竞争的电子相之间的平衡。在没有施加的磁场的情况下,在低压下,列和超导相被类似因素抑制。另一方面,在高压高于10 kbar的高压下,尽管缺乏与零磁场中磁相相关的任何传输的签名,但超导性仍然没有改变。但是,通过应用磁场,电阻率显示在温度激活行为之前的异常,分配给磁异常。我们发现,FESE的高压超导相很健壮,并且在存在Cu杂质的情况下保持增强,而磁相却没有。这可能表明高$ t _ {\ rm c} $超导性在存在相当玻璃磁相的情况下具有签名订单参数。
Superconductivity in FeSe is strongly enhanced under applied pressure and it is proposed to emerge from anomalously coupled structural and magnetic phases. Small impurities inside the Fe plane can strongly disrupt the pair formation in FeSe at ambient pressure and can also reveal the interplay between normal and superconducting phases. Here, we investigate how an impurity inside the Fe plane induced by the Cu substitution can alter the balance between competing electronic phases of FeSe at high pressures. In the absence of an applied magnetic field, at low pressures the nematic and superconducting phases are suppressed by a similar factor. On the other hand, at high pressures, above 10 kbar, the superconductivity remains unaltered despite the lack of any signature in transport associated to a magnetic phase in zero-magnetic field. However, by applying a magnetic field, the resistivity displays an anomaly preceding the activated behaviour in temperature, assigned to a magnetic anomaly. We find that the high-pressure superconducting phase of FeSe is robust and remains enhanced in the presence of Cu impurity, whereas the magnetic phase is not. This could suggest that high-$T_{\rm c}$ superconductivity has a sign-preserving order parameter in a presence of a rather glassy magnetic phase.