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[1]
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G. Blatter, V. B. Geshkenbein, and N. B. Kopnin, From microscopic theory
to Boltzmann kinetic equation: Application to vortex dynamics, Phys. Rev. B
59, 14663 (1999).
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[2]
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M. J. W. Dodgson, V. B. Geshkenbein, and G. Blatter, Defect-unbinding
transition in layered superconductors, Phys. Rev. Lett. 83, 5358
(1999).
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[3]
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A. L. Fauchere, W. Belzig, and G. Blatter, Paramagnetic instability at
normal-metal-superconductor interfaces, Phys. Rev. Lett. 82, 3336
(1999).
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[4]
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A. Fauchere, V. Geshkenbein, and G. Blatter, Comment on ''Orbital
Paramagnetism of electrons in proximity to a superconductor'', Phys. Rev.
Lett. 82, 1796 (1999).
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[5]
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D. A. Gorokhov and G. Blatter, Hall tunneling of vortices in superclean
superconductors, J. Supercond. 12, 835 (1999).
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[6]
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D. A. Gorokhov and G. Blatter, Exact free energy distribution function of
a randomly forced directed polymer, Phys. Rev. Lett. 82, 2705 (1999).
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[7]
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D. A. Gorokhov and G. Blatter, Singularities of the renormalization-group
flow for random elastic manifolds, Phys. Rev. B 59, 32 (1999).
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[8]
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L. B. Ioffe, V. B. Geshkenbein, M. V. Feigel'man, A. L. Fauchere, and
G. Blatter, Environmentally decoupled sds-wave Josephson junctions for
quantum computing, Nature 398, 679 (1999).
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[9]
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H. G. Katzgraber, H. P. Buchler, and G. Blatter, Casimir force between
vortex matter in anisotropic and layered superconductors, Phys. Rev. B
59, 11990 (1999).
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[10]
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U. Ledermann, A. L. Fauchere, and G. Blatter, Nonlocality in mesoscopic
Josephson junctions with strip geometry, Phys. Rev. B 59, R9027
(1999).
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[11]
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O. S. Wagner, V. B. Geshkenbein, A. I. Larkin, and G. Blatter,
Renormalization-group analysis of weak collective pinning in type-II
superconductors, Phys. Rev. B 59, 11551 (1999).
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[12]
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A. van otterlo, D. S. Golubev, A. D. Zaikin, and G. Blatter, Dynamics and
effective actions of BCS superconductors, Eur. Phys. J. B 10, 131
(1999).
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[13]
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H. Bucheli, O. S. Wagner, V. B. Geshkenbein, A. I. Larkin, and G. Blatter,
(4+N)-dimensional elastic manifolds in random media: A renormalization-group
analysis, Phys. Rev. B 57, 7642 (1998).
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[14]
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M. J. W. Dodgson, V. B. Geshkenbein, H. Nordborg, and G. Blatter,
Thermodynamics of the first-order vortex lattice melting transition in
YBa2Cu3O7-delta, Phys. Rev. B 57, 14498 (1998).
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[15]
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M. J. W. Dodgson, V. B. Geshkenbein, H. Nordborg, and G. Blatter,
Characteristics of first-order vortex lattice melting: Jumps in entropy and
magnetization, Phys. Rev. Lett. 80, 837 (1998).
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[16]
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A. L. Fauchere, G. B. Lesovik, and G. Blatter, Finite-voltage shot noise
in normal-metal-superconductor junctions, Phys. Rev. B 58, 11177
(1998).
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[17]
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D. A. Gorokhov and G. Blatter, Metastability of (d+n)-dimensional elastic
manifolds, Phys. Rev. B 58, 5486 (1998).
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[18]
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D. A. Gorokhov and G. Blatter, Diffusion and creep of a particle in a
random potential, Phys. Rev. B 58, 213 (1998).
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[19]
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D. A. Gorokhov and G. Blatter, Thermally activated Hall creep of flux
lines from a columnar defect, Phys. Rev. B 57, 3577 (1998).
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[20]
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D. A. Gorokhov and G. Blatter, Quantum depinning of a pancake vortex from
a columnar defect, Phys. Rev. B 57, 3586 (1998).
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[21]
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L. Krusin-Elbaum, et al., Anisotropic rescaling of a splayed pinning
landscape in Hg cuprates: Strong vortex pinning and recovery of variable
range hopping, Phys. Rev. Lett. 81, 3948 (1998).
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[22]
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G. B. Lesovik and G. Blatter, Nonlinear transport through NS junctions due
to imperfect Andreev reflection, JETP Lett. 68, 599 (1998).
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[23]
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M. Niderost, et al., Lower critical field H-c1 and barriers for vortex
entry in Bi2Sr2CaCu2O8+delta crystals, Phys. Rev. Lett. 81, 3231
(1998).
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[24]
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H. Nordborg and G. Blatter, Numerical study of vortex matter using the
Bose model: First-order melting and entanglement, Phys. Rev. B 58,
14556 (1998).
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[25]
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E. B. Sonin, V. B. Geshkenbein, A. van otterlo, and G. Blatter, Vortex
motion in charged and neutral superfluids: A hydrodynamic approach, Phys.
Rev. B 57, 575 (1998).
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[26]
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O. S. Wagner, G. Burkard, V. B. Geshkenbein, and G. Blatter, Thermal
suppression of strong pinning, Phys. Rev. Lett. 81, 906 (1998).
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[27]
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G. Blatter, Vortex matter, Physica C 282, 19 (1997).
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[28]
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G. Blatter and V. B. Geshkenbein, Van der Waals attraction of vortices in
superconductors, Physica C 282, 319 (1997).
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[29]
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A. L. Fauchere and G. Blatter, Magnetic breakdown in a
normal-metal-superconductor proximity sandwich, Phys. Rev. B 56, 14102
(1997).
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[30]
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D. A. Gorokhov and G. Blatter, Decay of metastable states: Sharp
transition from quantum to classical behavior, Phys. Rev. B 56, 3130
(1997).
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[31]
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R. Heeb, A. vanotterlo, M. Sigrist, and G. Blatter, Vortices in d-wave
superconductors, Physica B 230, 932 (1997).
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[32]
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S. L. Lee, et al., Role of electromagnetic coupling in the low-field phase
diagram of Bi2.15Sr1.85CaCu2O8+delta, Phys. Rev. B 55, 5666 (1997).
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[33]
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G. B. Lesovik, A. L. Fauchere, and G. Blatter, Nonlinearity in
normal-metal-superconductor transport: Scattering-matrix approach, Phys.
Rev. B 55, 3146 (1997).
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[34]
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M. Niderost, R. Frassanito, P. Visani, A. C. Mota, and G. Blatter,
Temperature dependence of the lower critical field H-c1 in
Bi2Sr2CaCu2O8+delta single crystals, Physica C 282, 1301 (1997).
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[35]
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H. Nordborg and G. Blatter, Vortices and 2D bosons: A path-integral Monte
Carlo study, Phys. Rev. Lett. 79, 1925 (1997).
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[36]
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C. M. Smith, A. O. Caldeira, and G. Blatter, Relaxation rates of
flux-lines and flux-pancakes in the presence of correlated disorder, Physica
C 276, 42 (1997).
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[37]
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J. R. Thompson, L. Krusinelbaum, L. Civale, G. Blatter, and C. Feild,
Superfast vortex creep in YBa2Cu3O7-delta crystals with columnar defects:
Evidence for variable-range vortex hopping, Phys. Rev. Lett. 78, 3181
(1997).
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[38]
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P. Ziswiler, V. Geshkenbein, and G. Blatter, Deformations and dynamics of
an elastic string in a periodic potential, Phys. Rev. B 56, 416
(1997).
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[39]
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G. Blatter, M. Feigelman, V. Geshkenbein, A. Larkin, and A. vanotterlo,
Vortex charge in type II superconductors, Czechoslovak J. Phys 46, 909
(1996).
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[40]
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G. Blatter, M. Feigelman, V. Geshkenbein, A. Larkin, and A. vanotterlo,
Electrostatics of vortices in type-II superconductors, Phys. Rev. Lett.
77, 566 (1996).
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[41]
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G. Blatter and V. Geshkenbein, van der Waals attraction of vortices in
anisotropic and layered superconductors, Phys. Rev. Lett. 77, 4958
(1996).
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[42]
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G. Blatter, V. Geshkenbein, A. Larkin, and H. Nordborg, Low-field phase
diagram of layered superconductors: The role of electromagnetic coupling,
Phys. Rev. B 54, 72 (1996).
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[43]
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G. Blatter, B. Ivlev, and V. Vinokur, Quantum depinning of vortices in
type-II superconductors, Phys. Rev. B 54, 13330 (1996).
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[44]
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V. Geshkenbein and G. Blatter, Van der Waals attraction between vortices
in HTSC, Czechoslovak J. Phys 46, 1827 (1996).
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[45]
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R. Heeb, A. vanotterlo, M. Sigrist, and G. Blatter, Vortices in d-wave
superconductors, Phys. Rev. B 54, 9385 (1996).
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[46]
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M. Niderost, A. Suter, P. Visani, A. C. Mota, and G. Blatter, Low-field
vortex dynamics over seven time decades in a Bi2212 single crystal,
Czechoslovak J. Phys 46, 1725 (1996).
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[47]
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M. Niderost, A. Suter, P. Visani, A. C. Mota, and G. Blatter, Low-field
vortex dynamics over seven time decades in a Bi2Sr2CaCu2O8+delta single
crystal for temperatures 13<=T<=83K, Phys. Rev. B 53, 9286 (1996).
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[48]
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H. Nordborg and G. Blatter, Path integral Monte Carlo simulation of
vortices, Czechoslovak J. Phys 46, 1817 (1996).
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[49]
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A. Schonenberger, A. Larkin, E. Heeb, V. Geshkenbein, and G. Blatter,
Strong pinning and plastic deformations of the vortex lattice, Phys. Rev.
Lett. 77, 4636 (1996).
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[50]
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C. M. Smith, A. O. Caldeira, and G. Blatter, Classical and quantum creep
of vortices from columnar defects, Czechoslovak J. Phys 46, 1739
(1996).
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[51]
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C. M. Smith, A. O. Caldeira, and G. Blatter, Creep of vortices from
columnar defects, Phys. Rev. B 54, R784 (1996).
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[52]
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J. R. Thompson, L. Krusinelbaum, L. Civale, G. Blatter, and D. K. Christen,
Dynamics of vortices pinned by columnar defects in YBa2Cu3O7 crystals,
Czechoslovak J. Phys 46, 1661 (1996).
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[53]
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O. S. Wagner, G. Blatter, H. Bucheli, V. B. Geshkenbein, and A. I. Larkin,
Renormalization group analysis of weak collective pinning, Czechoslovak J.
Phys 46, 1815 (1996).
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[54]
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D. Zech, et al., Phase diagram of Bi2.15Sr1.85CaCu2O8+delta in the
presence of columnar defects, Phys. Rev. B 54, 6129 (1996).
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[55]
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G. Blatter and B. Ivlev, Sound-attenuation by helicon modes in
high-T c superconductors, Phys. Rev. B 52, 4588 (1995).
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[56]
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L. Krusinelbaum, G. Blatter, and L. Civale, Bose-glass melting in YBaCuCo
crystals with correlated disorder - Reply, Phys. Rev. Lett. 75, 187
(1995).
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[57]
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A. Schonenberger, V. Geshkenbein, and G. Blatter, Vortex entaglement and
broken symmetry, Phys. Rev. Lett. 75, 1380 (1995).
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[58]
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C. M. Smith, B. Ivlev, and G. Blatter, Quantum intrinsic Hall creep,
Phys. Rev. B 52, 10581 (1995).
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[59]
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A. Vanotterlo, M. Feigelman, V. Geshkenbein, and G. Blatter, Vortex
dynamics and the Hall anomaly - a microscopic analysis, Phys. Rev. Lett.
75, 3736 (1995).
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[60]
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D. Zech, et al., Correlation of flux lines in single-crystal
Bi2Sr2CaCu2O8 with columnar deffetcs, Phys. Rev. B 52, 6913
(1995).
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[61]
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G. Blatter, M. V. Feigelman, V. B. Geshkenbein, A. I. Larkin, and V. M.
Vinokur, Vortices in high-temperature superconductors, Rev. Mod. Phys.
66, 1125 (1994).
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[62]
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G. Blatter and B. Ivlev, Quantum statistical mechanics of vortices in high
temperature superconductors, Phys. Rev. B 50, 10272 (1994).
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[63]
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G. Blatter and B. I. Ivlev, Quantum-Statistical Mechanics of Vortices in
High-Temperature Superconductors, Phys. Rev. B 50, 10272 (1994).
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[64]
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G. Blatter, et al., Quantum Liquid of Vortices in Superconductors at
T=0, Phys. Rev. B 50, 13013 (1994).
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[65]
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G. Blatter, B. Ivlev, Y. Kagan, and V. Vinokur, Quantum-Statistical and
Dynamical Effects in Vortex Systems, Physica C 235, 41 (1994).
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[66]
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G. Blatter, Y. Ivlev, B. andKagan, M. Theunissen, Y. Volokitin, and P. Kes,
Quantum liquid of vortices in superconductors at T = 0, Phys. Rev. B
50, 13013 (1994).
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[67]
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L. Krusin-Elbaum, et al., Bose-glass melting in YBaCuO crystals with
correlated disorder, Phys. Rev. Lett. 72, 1914 (1994).
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[68]
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C. Morais Smith, B. Ivlev, and G. Blatter, Macroscopic quantum tunneling
in a dc SQUID: instanton splitting, Phys. Rev. B 49, 4033 (1994).
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[69]
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G. Blatter and V. Geshkenbein, Quantum Collective Creep - Effects of
Anisotropy, Layering and Finite Temperature, Phys. Rev. B 47, 2725
(1993).
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[70]
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G. Blatter, V. B. Geshkenbein, and A. I. Larkin, Reply to Comment on From
isotropic to anisotropicsuperconductors: A scaling approach, Phys. Rev.
Lett. 71, 302 (1993).
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[71]
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G. Blatter and B. Ivlev, Quantum melting of the vortex lattice in
high-Tc superconductors, Phys. Rev. Lett. 70, 2621 (1993).
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[72]
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G. Blatter, B. Ivlev, and H. Nordborg, Vortex fluctuations in layered
superconductors and thin films, Phys. Rev. B 48, 10448 (1993).
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[73]
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A. Schönenberger, V. B. Geshkenbein, and G. Blatter, Elastic
properties of the Abrikosov flux line lattice in anisotropic
superconductors, Phys. Rev. B 48, 15914 (1993).
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[74]
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V. M. Vinokur, V. B. Geshkenbein, M. V. Feigel'man, and G. Blatter,
Scaling of the Hall resistivity in high Tc superconductors, Phys. Rev.
Lett. 71, 1242 (1993).
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[75]
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G. Blatter, V. B. Geshkenbein, and A. I. Larkin, From isotropic to
anisotropic superconductors: A scaling approach, Phys. Rev. Lett. 68,
875 (1992).
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[76]
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R. Fehrenbacher, V. B. Geshkenbein, and G. Blatter, Pinning phenomena and
critical currents in disordered long Josephson junctions, Phys. Rev. B
45, 5450 (1992).
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[77]
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P. A. Bares, G. Blatter, and M. Ogata, Exact solution of the t-J model
in one dimension at 2t = |J|: Ground state and excitation spectrum,
Phys. Rev. B 44, 130 (1991).
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[78]
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G. Blatter, V. B. Geshkenbein, and V. M. Vinokur, Quantum Collective
Creep, Phys. Rev. Lett. 66, 3297 (1991).
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[79]
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G. Blatter, B. I. Ivlev, and J. Rhyner, Kosterlitz-Thouless transition in
the smectic vortex state of a layered superconductor, Phys. Rev. Lett.
66, 2392 (1991).
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[80]
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G. Blatter, J. Rhyner, and V. M. Vinokur, Vortex pinning by twin
boundaries in copper oxide superconductors, Phys. Rev. B 43, 7826
(1991).
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[81]
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F. Stucki, J. Rhyner, and G. Blatter, Analysis of the low field critical
state in ceramic high-Tc superconductors, Physica C 181, 385
(1991).
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[82]
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P. A. Bares and G. Blatter, The supersymmetric t-J model in one
dimension: separation of spin and charge, Phys. Rev. Lett. 64, 2567
(1990).
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[83]
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C. Bruder, G. Blatter, and T. M. Rice, Ballistic quasiparticle propagation
and symmetry of the superconducting order parameter, Phys. Rev. B 42,
4812 (1990).
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[84]
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F. Greuter and G. Blatter, Electrical properties of grain boundaries in
polycrystalline semiconductors, Review article, Semicond. Sci. Technol.
5, 111 (1990).
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[85]
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G. Blatter, H. Dersch, T. Dupré, J. Rhyner, and H. Zeller, Critical
currents and magnetic properties of ceramic high-Tcsuperconductors, Mod.
Phys. Lett. B 3, 375 (1989).
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[86]
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J. Rhyner and G. Blatter, ''Limiting Path'' model of critical current in
a textured YBa2Cu3O7-δ film, Phys. Rev. B 40, 829
(1989).
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[87]
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J. Rhyner and G. Blatter, Optimal manifolds in random media, Europhys.
Lett. 10, 401 (1989).
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[88]
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G. Blatter and D. A. Browne, Zener tunneling and localization in small
conducting rings, Phys. Rev. B 37, 3856 (1988).
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[89]
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H. Dersch and G. Blatter, New critical-state model for critical currents
in ceramic high-Tc superconductors, Phys. Rev. B 38, 11391 (1988).
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[90]
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M. Rei Vilar, G. Blatter, P. Pfluger, M. Heyman, and M. Schott,
Monoenergetic and directed electron emission from a large-bandgap organic
insulator with negative electron affinity, Europhys. Lett. 5, 375
(1988).
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[91]
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G. Blatter and D. Baeriswyl, High-field transport phenomenology:
Hot-electron generation at semiconductor interfaces, Phys. Rev. B 36,
6446 (1987).
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[92]
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G. Blatter and F. Greuter, Carrier transport through grain boundaries in
semiconductors, Phys. Rev. B 33, 3952 (1986).
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[93]
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G. Blatter and F. Greuter, Electrical breakdown at semiconductor grain
boundaries, Phys. Rev. B 34, 8555 (1986).
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[94]
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G. Blatter, Scattering of atomic beams off a single surface step: an exact
solution, Ann. Phys. (N.Y) 162, 100 (1985).
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[95]
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G. Blatter, Scattering of atomic beams off rough stepped surfaces, Surf.
Science 145, 419 (1984).
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[96]
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G. Blatter and T. M. Rice, Scattering of atomic beams off stepped
surfaces, Phys. Rev. B 27, 7050 (1983).
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[97]
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G. Blatter and M. Heuer, The inhomogeneous diamagnetism at an impurity in
a free-electron gas, J. Phys. C 15, 747 (1982).
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[98]
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J. S. Helman, M. del Castillo-Mussot, W. Baltensperger, and G. Blatter,
Phenomenological derivation of the dielectric function of disordered
conductors, Helv. Phys. Acta 52, 632 (1979).
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