Resistivity tensor correlations in the mixed state of electron-doped superconductor Nd2−xCexCuO4+δ

[1]  M. R. Norman,et al.  From quantum matter to high-temperature superconductivity in copper oxides , 2015, Nature.

[2]  A. Nigro,et al.  Pinning mechanism in electron-doped HTS Nd 1.85 ?> Ce 0.15 ?> CuO 4 − δ ?> epitaxial films , 2014 .

[3]  R. Greene,et al.  Charge ordering in the electron-doped superconductor Nd2–xCexCuO4 , 2014, Science.

[4]  A. Ivanov,et al.  Magnetoresistance and hall effect in electron-doped superconductor Nd2 − xCexCuO4+δ with different degrees of nonstoichiometric disorder: A two-band model , 2014, The Physics of Metals and Metallography.

[5]  J. Gaudet,et al.  Nernst effect in the electron-doped cuprate superconductor Pr 2 − x Ce x CuO 4 : Superconducting fluctuations, upper critical field H c 2 , and the origin of the T c dome , 2014, 1405.6248.

[6]  E. Berg,et al.  Sign Reversal of the Hall Response in a Crystalline Superconductor , 2014, 1403.2729.

[7]  P. Dai,et al.  Longitudinal and transverse Hall resistivities in NaFe1−xCoxAs single crystals with x = 0.022 and 0.0205: weak pinning and anomalous electrical transport properties , 2013, Journal of physics. Condensed matter : an Institute of Physics journal.

[8]  T. Kamiya,et al.  Anomalous scaling behavior in a mixed-state Hall effect of a cobalt-doped BaFe 2 As 2 epitaxial film with a high critical current density over 1 MA/cm 2 , 2013, 1302.3696.

[9]  A. Ivanov,et al.  Doping effect on the anomalous behavior of the Hall effect in electron-doped superconductor Nd2−xCexCuO4+δ , 2011, 1109.6399.

[10]  K. Tsuei,et al.  Mixed-state hall effect and flux pinning in Ba(Fe1-xCo x)2As2 single crystals (x=0.08 and 0.10) , 2011 .

[11]  E. Choi,et al.  Thermally activated energy and flux flow Hall effect of Fe1+y(Te1-xSx)z , 2010, 1010.0263.

[12]  J. Dow,et al.  Coexisting holes and electrons in high-T C materials: implications from normal state transport , 2010, 1202.1792.

[13]  R. Greene,et al.  Progress and perspectives on electron-doped cuprates , 2009, 0906.2931.

[14]  A. Ivanov,et al.  Effect of the nonstoichiometric disorder on the temperature dependence of the upper critical field in Nd2−xCexCuO4+δ electron superconductors , 2008 .

[15]  A. Ivanov,et al.  Quasi-two-dimensional transport properties of the layered superconductor Nd2−xCexCuO4+δ , 2007 .

[16]  P. Fournier,et al.  Different roles of cerium substitution and oxygen reduction in transport in Pr 2 − x Ce x CuO 4 thin films , 2007 .

[17]  Sung-Ik Lee,et al.  Scaling behavior of mixed-state hall effect in MgB2 thin films , 2006 .

[18]  K. Ueda,et al.  Antiferromagnetic spin fluctuation and superconductivity , 2003 .

[19]  Sung-Ik Lee,et al.  Universal scaling of the Hall resistivity in MgB 2 superconductors , 2002, cond-mat/0202502.

[20]  R. Roessler,et al.  Double sign reversal of the vortex Hall effect in YBa 2 Cu 3 O 7 − δ thin films in the strong pinning limit of low magnetic fields , 2000, cond-mat/0007466.

[21]  V. Vinokur,et al.  Effects of Pinning on the Flux Flow Hall Resistivity , 1999 .

[22]  Y. Iźyumov Spin-fluctuation mechanism of high- T c superconductivity and order-parameter symmetry , 1999 .

[23]  A. Erb,et al.  Scaling of the Hall Resistivity in the Solid and Liquid Vortex Phases in Twinned Single Crystal YBCO , 1998, cond-mat/9811106.

[24]  S. Okuma,et al.  SCALING BEHAVIOR OF THE LONGITUDINAL AND HALL RESISTIVITIES IN INDIUM FILMS , 1997 .

[25]  G. Volovik,et al.  Flux-flow in d-wave superconductors: Low temperature universality and scaling , 1997, cond-mat/9704184.

[26]  Lee,et al.  Pinning strength dependence of mixed-state Hall effect in YBa2Cu3O7 crystals with columnar defects. , 1996, Physical review letters.

[27]  Peng,et al.  Single-crystal neutron-diffraction structures of reduced and oxygenated Nd2-xCexCuOy. , 1996, Physical review. B, Condensed matter.

[28]  Peng,et al.  Anisotropy, pinning, and the mixed-state Hall effect. , 1995, Physical review. B, Condensed matter.

[29]  M. Cagigal,et al.  Scaling of the longitudinal and Hall resistivities in superconducting L2−xCexCuO4 (L Nd, Sm) single crystals , 1995 .

[30]  D. V. Harlingen,et al.  Phase-sensitive tests of the symmetry of the pairing state in the high-temperature superconductors-Evidence for d x 2 -y 2 symmetry , 1995 .

[31]  Johansson,et al.  Mixed-state Hall conductivity in high-Tc superconductors: Direct evidence of its independence on disorder. , 1995, Physical review letters.

[32]  Cagigal,et al.  Hall effect in the mixed state of superconducting L1.85Ce0.15CuO4 (L=Nd,Sm) single crystals. , 1994, Physical review. B, Condensed matter.

[33]  Dong,et al.  Unified theory of mixed state Hall effect in type-II superconductors: Scaling behavior and sign reversal. , 1994, Physical review letters.

[34]  Vinokur,et al.  Scaling of the Hall resistivity in high-Tc superconductors. , 1993, Physical review letters.

[35]  Samoĭlov Av Universal behavior of the Hall resistivity of single crystalline Bi2Sr2CaCu2Ox in the thermally activated flux flow regime. , 1993 .

[36]  Cai,et al.  Diminishing sign anomaly and scaling behavior of the mixed-state Hall resistivity in Tl2Ba2Ca2Cu3O10 films containing columnar defects. , 1993, Physical review letters.

[37]  Dorsey Vortex motion and the Hall effect in type-II superconductors: A time-dependent Ginzburg-Landau theory approach. , 1992, Physical review. B, Condensed matter.

[38]  Luo,et al.  Scaling of the longitudinal and Hall resistivities from vortex motion in YBa2Cu3O7. , 1992, Physical review letters.

[39]  Fisher,et al.  Hall effect near the vortex-glass transition in high-temperature superconductors. , 1992, Physical review letters.

[40]  S. G. Galkin,et al.  Smooth homogeneous HTSC thin films produced by laser deposition with flux separation , 1991 .

[41]  John Bardeen,et al.  Theory of the Motion of Vortices in Superconductors , 1965 .

[42]  Judy Z. Wu,et al.  Scaling behavior and mixed-state Hall effect in epitaxial HgBa{sub 2}CaCu{sub 2}O{sub 6+{delta}} thin films , 1997 .

[43]  R. Hake MIXED-STATE HALL EFFECT IN AN EXTREME TYPE-II SUPERCONDUCTOR. , 1968 .