Spontaneous macroscopic magnetization at the superconducting transition temperature of YBa2Cu3O7-δ
R. Carmi,
E. Polturak (),
G. Koren and
A. Auerbach
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R. Carmi: Technion–Israel Institute of Technology
E. Polturak: Technion–Israel Institute of Technology
G. Koren: Technion–Israel Institute of Technology
A. Auerbach: Technion–Israel Institute of Technology
Nature, 2000, vol. 404, issue 6780, 853-855
Abstract:
Abstract A noteworthy feature of the high-temperature superconductors is the unconventional symmetry of the superconducting order parameter. Several experiments1,2,3 have established that the order parameter has a four-fold d x 2 - y 2 symmetry under rotation of the lattice (the order parameter of conventional superconductors is, in contrast, isotropic). An intriguing and much debated possibility is that, in certain cases, an additional imaginary component might be present, having an isotropic s-wave4,5,6 or dxy symmetry7,8,9,10. A consequence of a complex order parameter of the form d x 2 - y 2 + idxy is that it would break both reflection (parity, P) symmetry and time-reversal (T) symmetry, a clear signature of which would be the spontaneous appearance of a macroscopic magnetization at the superconducting transition temperature. Broken T symmetry has been reported5,11, but searches for the effects of combined P and T symmetry breaking have so far yielded null results12,13,14,15. Here we report the observation of a weak (∼10-5 gauss) magnetic field that appears spontaneously at the superconducting transition temperature of epitaxial thin films of YBa2Cu3O7-δ. The magnetic signal originates near the edges of the samples. One interpretation for this observation is that the order parameter carries an intrinsic angular momentum, related to the breaking of P and T symmetries, but other possibilities cannot yet be excluded.
Date: 2000
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DOI: 10.1038/35009062
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