Article (Scientific journals)
Sign reversal of the Hall resistance in the mixed-state of La1.89Ce0.11CuO4 and La1.89Ce0.11(Cu0.99Co0.01)O4 thin films
Jin, K; Wu, BX; Zhu, BY et al.
2012In Physica C. Superconductivity, 479, p. 53
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Keywords :
superconductivity
Abstract :
[en] The transport properties of La1.89Ce0.11CuO4(LCCO) and La1.89Ce0.11(Cu0.99Co0.01)O4 (LCCO:Co) superconducting thin films are investigated. When the external field H is applied along the crystallographic c-axis, a double sign reversal of the Hall voltage in the mixed state of LCCO:Co thin films is observed whereas a single sign reversal is detected in LCCO. A double sign reversal of the Hall signal in LCCO can be recovered if the magnetic field is tilted away from the plane of the film. We find that the transition from one to two of the Hall sign reversal coincides with the change in the pinning from strong to weak. This temperature/field induced transition is caused either by the magnetic impurities in LCCO:Co or by the coupling between the pancake vortices and the in-plane Josephson vortices in LCCO. These results are in agreement with early theoretical and numerical predictions.
Disciplines :
Physics
Author, co-author :
Jin, K;  Beijing National Laboratory for Condensed Matter Physics
Wu, BX;  Beijing National Laboratory for Condensed Matter Physics
Zhu, BY;  Beijing National Laboratory for Condensed Matter Physics
Zhao, BR;  Beijing National Laboratory for Condensed Matter Physics
Volodin, A;  Katholieke Universiteit Leuven - KUL
Vanacken, J;  Katholieke Universiteit Leuven - KUL
Silhanek, Alejandro  ;  Katholieke Universiteit Leuven - KUL
Moshchalkov, VV;  Katholieke Universiteit Leuven - KUL
Language :
English
Title :
Sign reversal of the Hall resistance in the mixed-state of La1.89Ce0.11CuO4 and La1.89Ce0.11(Cu0.99Co0.01)O4 thin films
Publication date :
2012
Journal title :
Physica C. Superconductivity
ISSN :
0921-4534
eISSN :
1873-2143
Publisher :
Elsevier
Volume :
479
Pages :
53
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBi :
since 15 October 2012

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