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SrPtP 超导体单晶中可能存在的非常规序参量。

Possible unconventional order parameter in single crystals of SrPtP superconductor.

作者信息

Cho Kyuil, Teknowijoyo S, Ghimire S, Krenkel E H, Tanatar M A, Zhigadlo N D, Kong S, Kovnir K, Prozorov R

机构信息

Ames Laboratory, Ames, IA 50011, United States of America.

Department of Physics, Hope College, Holland, MI 49423, United States of America.

出版信息

J Phys Condens Matter. 2022 Aug 30;34(43). doi: 10.1088/1361-648X/ac8a36.

Abstract

Anisotropic properties of single crystals of SrPtP were studied using London penetration depth and electrical resistivity measurements. The upper critical field,Hc2(T), was determined from four-probe electrical resistivity measurements for three orthogonal directions of a magnetic field with respect to the crystal. The London penetration depth,λ(T), was determined from the magnetic susceptibility of the Meissner-London state measured using a tunnel-diode resonator technique. WhereasHc2(T)and the normal-stateρ(T)are practically identical for all three magnetic field orientations, the London penetration depth shows significant unidirectional anisotropy. The low-temperatureλ(T)is exponentially attenuated when a small excitation radiofrequency magnetic field,, is applied along thec''-direction, in which case screening currents flow in thea''b''-plane, while for the other two orientations,Hrf∥a''andHrf∥b'', the London penetration depth shows a much stronger,λ(T)∼T2, variation. Such unusual and contrasting behavior of the two anisotropies,γHT=Hc2,ab/Hc2,c=ξab/ξcandγλT=λc/λab, imposes significant constraints on the possible order parameter. Although our measurements are insufficient to derive conclusively the superconducting gap anisotropy, the order parameter with two point nodes and a modulation in the perpendicular direction is qualitatively consistent with the experimental observations.

摘要

利用伦敦穿透深度和电阻率测量研究了SrPtP单晶的各向异性性质。通过对磁场相对于晶体的三个正交方向进行四探针电阻率测量,确定了上临界场Hc2(T)。利用隧道二极管谐振器技术测量迈斯纳-伦敦态的磁化率,确定了伦敦穿透深度λ(T)。尽管对于所有三个磁场方向,Hc2(T)和正常态ρ(T)实际上是相同的,但伦敦穿透深度显示出显著的单向各向异性。当沿c''方向施加一个小的激发射频磁场时,低温下的λ(T)呈指数衰减,在这种情况下,屏蔽电流在a''b''平面中流动,而对于其他两个方向,Hrf∥a''和Hrf∥b'',伦敦穿透深度显示出更强的变化,λ(T)∼T2。这两种各向异性γHT = Hc2,ab/Hc2,c = ξab/ξc和γλT = λc/λab的这种异常且对比鲜明的行为,对可能的序参量施加了重大限制。尽管我们的测量不足以最终得出超导能隙各向异性,但具有两个点节点且在垂直方向有调制的序参量在定性上与实验观测结果一致。

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