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LaFeAsO0.89F0.11在极高磁场下的双带超导性。

Two-band superconductivity in LaFeAsO0.89F0.11 at very high magnetic fields.

作者信息

Hunte F, Jaroszynski J, Gurevich A, Larbalestier D C, Jin R, Sefat A S, McGuire M A, Sales B C, Christen D K, Mandrus D

机构信息

National High Magnetic Field Laboratory, Florida State University, Tallahassee, Florida 32310, USA.

出版信息

Nature. 2008 Jun 12;453(7197):903-5. doi: 10.1038/nature07058. Epub 2008 May 28.

Abstract

The recent synthesis of the superconductor LaFeAsO(0.89)F(0.11) with transition temperature T(c) approximately 26 K (refs 1-4) has been quickly followed by reports of even higher transition temperatures in related compounds: 41 K in CeFeAsO(0.84)F(0.16) (ref. 5), 43 K in SmFeAsO(0.9)F(0.1) (ref. 6), and 52 K in NdFeAsO(0.89)F(0.11) and PrFeAsO(0.89)F(0.11) (refs 7, 8). These discoveries have generated much interest in the mechanisms and manifestations of unconventional superconductivity in the family of doped quaternary layered oxypnictides LnOTMPn (Ln: La, Pr, Ce, Sm; TM: Mn, Fe, Co, Ni; Pn: P, As), because many features of these materials set them apart from other known superconductors. Here we report resistance measurements of LaFeAsO(0.89)F(0.11) at high magnetic fields, up to 45 T, that show a remarkable enhancement of the upper critical field B(c2) compared to values expected from the slopes dB(c2)/dT approximately 2 T K(-1) near T(c), particularly at low temperatures where the deduced B(c2)(0) approximately 63-65 T exceeds the paramagnetic limit. We argue that oxypnictides represent a new class of high-field superconductors with B(c2) values surpassing those of Nb(3)Sn, MgB(2) and the Chevrel phases, and perhaps exceeding the 100 T magnetic field benchmark of the high-T(c) copper oxides.

摘要

近期合成的转变温度(T_{c})约为26K的超导材料LaFeAsO(0.89)F(0.11)(参考文献1 - 4)之后,很快又有报道称相关化合物具有更高的转变温度:CeFeAsO(0.84)F(0.16)中为41K(参考文献5),SmFeAsO(0.9)F(0.1)中为43K(参考文献6),NdFeAsO(0.89)F(0.11)和PrFeAsO(0.89)F(0.11)中为52K(参考文献7、8)。这些发现引发了人们对掺杂的四元层状氧族磷化物LnOTMPn(Ln:La、Pr、Ce、Sm;TM:Mn、Fe、Co、Ni;Pn:P、As)家族中非传统超导机制及表现的浓厚兴趣,因为这些材料的许多特性使其有别于其他已知的超导材料。在此,我们报告了对LaFeAsO(0.89)F(0.11)在高达45T的高磁场下的电阻测量结果,结果表明,与在(T_{c})附近由斜率(dB_{c2}/dT\approx2T K^{-1})预期的值相比,上临界场(B_{c2})有显著增强,特别是在低温下,推断出的(B_{c2}(0)\approx63 - 65T)超过了顺磁极限。我们认为,氧族磷化物代表了一类新的高场超导材料,其(B_{c2})值超过了Nb₃Sn、MgB₂和 Chevrel相,甚至可能超过了高温铜氧化物的100T磁场基准。

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