Index
A
AC loss energy density, 82, 91
Ampere’s law, 17
Apparent penetration field, 91
B
Balance between the Lorentz force and the
pinning force, 74
Bardeen-Stephen model, 63
Bean’s model, 76
Biot-Savart law, 17
Breaking of symmetry, 27
Breaking of time reversal symmetry, 7
C
Campbell’s AC penetration depth, 87
Campbell’s model, 93, 98
Coherence length, 60
Coherent potential approximation theory,
102
Condensation energy density, 57
Condensation energy interaction, 71
Conductor, 22, 29
Continuity equation for flux lines, 82, 86,
106, 109, 134, 152
Coulomb force, 11
Coulomb’s law, 12
Critical current density, 6, 74, 79
Critical field, 51
Critical state model, 8, 74
Critical state theory, 106
Curl, 15
D
δl interaction, 71
δT c interaction, 71
Dielectric constant, 23
Dielectric material, 22
Differential form of Ampere’s law, 19
Differential form of Faraday’s law, 24
Direct summation, 72
Displacement current, 25
Divergence, 13
Drug delivery system, 159
Dynamic critical state model, 84
E
E-B analogy, 8, 24, 29, 37
Effective viscous coefficient, 98
Electric charge, 11
Electric conductivity, 27
Electric current, 16
Electric field, 11
Electric field line, 12
Electric flux density, 23
Electric polarization, 22, 48
Electric potential, 14
Electromagnetic energy density, 25
Electromagnetic induction, 24
Electromotive force, 24
Electron scattering, 70
Electrostatic energy, 45
Electrostatic energy density, 45
Electrostatic shielding, 48
Elementary pinning force, 70
Equi-electric potential, 30
Equi-electric potential surface, 32
Equipotential surface, 15, 32, 37
© The Editor(s) (if applicable) and The Author(s), under exclusive license
to Springer Nature Switzerland AG 2021
T. Matsushita, Superconductivity and Electromagnetism, Springer Series
in Solid-State Sciences 195, https://doi.org/10.1007/978-3-030-67568-4
205
A
AC loss energy density, 82, 91
Ampere’s law, 17
Apparent penetration field, 91
B
Balance between the Lorentz force and the
pinning force, 74
Bardeen-Stephen model, 63
Bean’s model, 76
Biot-Savart law, 17
Breaking of symmetry, 27
Breaking of time reversal symmetry, 7
C
Campbell’s AC penetration depth, 87
Campbell’s model, 93, 98
Coherence length, 60
Coherent potential approximation theory,
102
Condensation energy density, 57
Condensation energy interaction, 71
Conductor, 22, 29
Continuity equation for flux lines, 82, 86,
106, 109, 134, 152
Coulomb force, 11
Coulomb’s law, 12
Critical current density, 6, 74, 79
Critical field, 51
Critical state model, 8, 74
Critical state theory, 106
Curl, 15
D
δl interaction, 71
δT c interaction, 71
Dielectric constant, 23
Dielectric material, 22
Differential form of Ampere’s law, 19
Differential form of Faraday’s law, 24
Direct summation, 72
Displacement current, 25
Divergence, 13
Drug delivery system, 159
Dynamic critical state model, 84
E
E-B analogy, 8, 24, 29, 37
Effective viscous coefficient, 98
Electric charge, 11
Electric conductivity, 27
Electric current, 16
Electric field, 11
Electric field line, 12
Electric flux density, 23
Electric polarization, 22, 48
Electric potential, 14
Electromagnetic energy density, 25
Electromagnetic induction, 24
Electromotive force, 24
Electron scattering, 70
Electrostatic energy, 45
Electrostatic energy density, 45
Electrostatic shielding, 48
Elementary pinning force, 70
Equi-electric potential, 30
Equi-electric potential surface, 32
Equipotential surface, 15, 32, 37
© The Editor(s) (if applicable) and The Author(s), under exclusive license
to Springer Nature Switzerland AG 2021
T. Matsushita, Superconductivity and Electromagnetism, Springer Series
in Solid-State Sciences 195, https://doi.org/10.1007/978-3-030-67568-4
205
