Thickness independence of field induced time reversal symmetry breaking in Y/sub1 Ba/sub2 Cu/sub3 O/sub7-delta thin films
arXiv:cond-mat/0104012 · doi:10.1103/PhysRevB.64.092509
Abstract
We have measured the field dependence of the Zero Bias Conductance Peak (ZBCP) of tunnel junctions prepared on (110) oriented Y1Ba2Cu3O7-d films of various thickness. We have found that the field splitting of the ZBCP, believed to be due to the Time Reversal Symmetry Breaking (TRSB) of Andreev surface bound states, is independent of film thickness. This rules out that Meissner screening currents are at the origin of TRSB. We conclude that TRSB must, instead, be due to a field-induced modification of the Order parameter. Different possibilities involving an imaginary component are discussed.
7 pages 4 figures submitted to PRB
Cited by in corpus (5)
- Andreev - Saint James reflections: a probe of cuprate superconductors
- Superconductors with broken time-reversal symmetry: Spontaneous magnetization and quantum Hall effects
- Spontaneous magnetization and Hall effect in superconductors with broken time-reversal symmetry
- Tunneling conductance in normal metal - high cuprate junctions in the presence of magnetic field
- Local Whole-Device Scanning of Distortion in Superconducting Microwave Resonators