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铁磁性和超导性共存:EuFe₂(As₁ - xPx)₂的磁化和穆斯堡尔研究。

Coexistence of ferromagnetism and superconductivity: magnetization and Mössbauer studies of EuFe₂(As₁ - xPx)₂.

机构信息

Racah Institute of Physics, The Hebrew University, Jerusalem 91904, Israel.

出版信息

J Phys Condens Matter. 2011 Feb 16;23(6):065701. doi: 10.1088/0953-8984/23/6/065701. Epub 2011 Jan 27.

Abstract

Magnetization and (57)Fe and (151)Eu Mössbauer studies of EuFe(2)(As(1 - x)P(x))(2) (x = 0-1.0) at temperatures (5-300 K) have been performed. The magnetization studies show a decrease of the divalent Eu sublattice antiferromagnetic transition temperature from T(AFM) = 20 K for x = 0 to 16 K at x≈0.2. For x > 0.2, the Eu sublattice is ferromagnetically ordered at T(FM), which increases up to 27 K for x = 1.0. For 0.2 < x < 0.5, the system becomes superconducting. (151)Eu Mössbauer studies in the antiferromagnetic range show a constant saturation hyperfine field of 26.2 T and that the magnetization is almost perpendicular to the c-axis. On the other hand, in the ferromagnetic range, the hyperfine field increases up to 30.8 T (for x = 1) and the easy axis is almost parallel to the c-axis. In both regions the magnetic axis seems to be tilted from the basal plane or the c-axis by ∼ 20°. The (57)Fe Mössbauer studies show no magnetism in the iron site for x > 0.2, yet at 5 K exhibit transferred magnetic hyperfine fields (∼1 T) from the ferromagnetically ordered Eu sublattice, even in the superconducting region. Superconductivity in the presence of ferromagnetism is generally not observable. However, transferred magnetic hyperfine fields in the superconducting state are observed here for the first time.

摘要

对温度为(5-300 K)的 EuFe(2)(As(1 - x)P(x))(2)(x = 0-1.0)进行了磁化率和(57)Fe 和(151)Eu Mössbauer 研究。磁化率研究表明,二价 Eu 亚晶格反铁磁转变温度从 x = 0 时的 T(AFM) = 20 K 降低到 x≈0.2 时的 16 K。对于 x > 0.2,Eu 亚晶格在 T(FM)下呈铁磁有序,当 x = 1.0 时增加到 27 K。对于 0.2 < x < 0.5,该系统变为超导。在反铁磁范围内的(151)Eu Mössbauer 研究表明,超精细场的饱和值为 26.2 T,并且磁化强度几乎垂直于 c 轴。另一方面,在铁磁范围内,超精细场增加到 30.8 T(对于 x = 1),易轴几乎平行于 c 轴。在这两个区域中,磁轴似乎相对于基面或 c 轴倾斜约 20°。(57)Fe Mössbauer 研究表明,对于 x > 0.2,铁位没有磁性,但在 5 K 时,从铁磁有序的 Eu 亚晶格表现出转移磁超精细场(约 1 T),即使在超导区域也是如此。通常情况下,在铁磁体存在的情况下不会观察到超导性。然而,在这里首次观察到超导态中的转移磁超精细场。

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