Spontaneous breaking of time-reversal symmetry in the pseudogap state of a high-Tc superconductor

被引:0
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作者
A. Kaminski
S. Rosenkranz
H. M. Fretwell
J. C. Campuzano
Z. Li
H. Raffy
W. G. Cullen
H. You
C. G. Olson
C. M. Varma
H. Höchst
机构
[1] University of Illinois at Chicago,Department of Physics
[2] Argonne National Laboratory,Materials Science Division
[3] University of Wales Swansea,Department of Physics
[4] Université Paris-Sud,Laboratoire de Physique des Solides
[5] Iowa State University,Ames Laboratory
[6] Lucent Technologies,Bell Laboratories
[7] Synchrotron Radiation Center,undefined
来源
Nature | 2002年 / 416卷
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摘要
A change in ‘symmetry’ is often observed when matter undergoes a phase transition—the symmetry is said to be spontaneously broken. The transition made by underdoped high-transition-temperature (high-Tc) superconductors is unusual, in that it is not a mean-field transition as seen in other superconductors. Rather, there is a region in the phase diagram above the superconducting transition temperature Tc (where phase coherence and superconductivity begin) but below a characteristic temperature T* where a ‘pseudogap’ appears in the spectrum of electronic excitations1,2. It is therefore important to establish if T* is just a cross-over temperature arising from fluctuations in the order parameter that will establish superconductivity at Tc (refs 3, 4), or if it marks a phase transition where symmetry is spontaneously broken5,6,7,8,9,10. Here we report that, for a material in the pseudogap state, left-circularly polarized photons give a different photocurrent from right-circularly polarized photons. This shows that time-reversal symmetry is spontaneously broken11 below T*, which therefore corresponds to a phase transition.
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页码:610 / 613
页数:3
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