Laboratory for Muon Spin Spectroscopy, Paul Scherrer Institute, CH-5232 Villigen PSI, Switzerland.
Phys Rev Lett. 2011 Mar 18;106(11):117602. doi: 10.1103/PhysRevLett.106.117602. Epub 2011 Mar 16.
We report on muon-spin rotation and relaxation (μSR), electrical resistivity, magnetization and differential scanning calorimetry measurements performed on a high-quality single crystal of Cs(0.8)(FeSe(0.98))(2). Whereas our transport and magnetization data confirm the bulk character of the superconducting state below T(c)=29.6(2) K, the μSR data indicate that the system is magnetic below T(N)=478.5(3) K, where a first-order transition occurs. The first-order character of the magnetic transition is confirmed by differential scanning calorimetry data. Taken all together, these data indicate in Cs(0.8)(FeSe(0.98))(2) a microscopic coexistence between the superconducting phase and a strong magnetic phase. The observed T(N) is the highest reported to date for a magnetic superconductor.
我们报告了在高质量的 Cs(0.8)(FeSe(0.98))(2)单晶上进行的 μ 子自旋旋转和弛豫(μSR)、电阻率、磁化和差示扫描量热法测量。尽管我们的输运和磁化数据证实了超导态在 T(c)=29.6(2) K 以下具有体性质,但 μSR 数据表明系统在 T(N)=478.5(3) K 以下具有磁性,其中发生一级相变。磁性转变的一级性质通过差示扫描量热法数据得到了确认。综合所有这些数据,表明在 Cs(0.8)(FeSe(0.98))(2)中,超导相和强磁相之间存在微观共存。观察到的 T(N)是迄今为止报道的磁性超导体中的最高值。