0.2 degrees
1 ngstrøm
1,000 ngstrøm
10 tesla
4.2 degrees
7 degrees
77 Kelvin
AC Josephson effect
ac-effect
acoustic attenuation
aluminium
aluminium
aluminium
aluminium oxide
analogy with magnetism
antiquarks
approximate the diagonalization of a very large degenerate matrix
atomic physics
Bardeen-Cooper-Schrieffer theory
BCS wave function
BCS wave function
BCS-theory
BCS-theory
Big Bang
billiard
binding
binding energy independent of the volume
Bose-Einstein systems with tuneable Feshbach resonances
bosons
bridge
broken symmetry
characteristic frequency
charge distribution
charge radius
chess
coherence distance
coherence factors
coherence factors
coherence length
coherence length
coherent paths
coherent state
collective modes in nuclei
complex
condensate
condensate of neutrons
condensation energy
condensation energy
condensation energy
Cooper bound state
Cooper pairing
Cooper pairs
Cooper problem
Cooper solution
copper wires
correlation energy
coupling free energy
critical currents
dark matter
DC-transformer
Debye frequency
Debye frequency
Debye frequency
Debye temperature
degeneracy problems in quantum theory
degenerate
degenerate matrix
density
density of states
Dirac’s vacuum
disappear
Earth’s magnetic field
effective capacitance
electrodynamic properties
electrodynamics
electromagnetic absorption
electron pairs
electron-phonon
electron-phonon interaction
electroweak interactions
energy gap
energy gap
energy gap
energy gap
energy gap
energy gap
energy gap
energy gap
even-odd artifact effect
excitation spectrum
exclusion principle
experiments
exponential factor
exponentially decreasing heat capacity
Fermi sea
Fermi surface
Fermi surface
Fermi surface
Fermi surface
fermion system
fermions
few millivolts
Feynman diagrams
field equations
field theory
field topology
finite current
finite momentum
flux flow
flux-quantization
flux-quantization experiments
functional integrals
gap
gap
gap
gap size
gauge invariance
gauge invariant
gauge symmetry breaking
glass
gravitational red-shift
ground state
ground state
He3 refrigerator
Helmholtz magnets
Higgs mechanism
high energy
high energy
high field superconducting coils
high phonon frequency
high temperature superconductors
high-Tc
hole-effect
I worked very hard
infinite charge
infinitesimal
infrared absorption
infrared spectroscopy
instability in the many-body problem
instability of the electron gas
interact
interaction between electrons
invent
invention
ionic conduction
ionic vibrations
isotope effect
isotope effect
isotope effect
It is good to change your field
It’s a most satisfying thing that you can find out new things
Josephson effect
Josephson effect
Josephson effect
Josephson effects
Josephson effects
Josephson equations
Josephson junction
junction
junctions
kinetic energy
Kondo effect
Landau theory of the Fermi liquid
large energy in transitions from 2p from 1s levels
lead
lead
lead
lead
lead oxide
LHC
liquid helium
liquid helium
London penetration depth
longitudinal excitations
long-range Coulomb forces
low thermal conductivity
lower energy
magnet
magnetic field
magnetic impurities in metals
magnetism
magnetohydrodynamic effect
magnets
manganese wires
many electron system
many-body problem
mass generation
massive bosons
mathematical structure
mathematically
Meissner effect
Meissner effect
momentum
momentum
Mössbauer effect
mu-meson/lead atoms
mu-mesonic atoms
N0(V)
nanoamps
negative energy
neutron radius
neutron stars
NMR relaxation rate
nuclear magnetic resonance
nuclear matter
nucleus
nucleus
number of pairs
opposite momenta and spin
order parameter
orthogonalize
oscillation
oxide
pair condensation
paired electrons
pairing
pairing condensate
pairing Hamiltonian
particle physics
pattern
penetration depth
perfect correlation
perturbation
perturbation problems in electrodynamics
phase
phase
phase angle
phase of the wave function
phase transitions
phonon mechanism
phonon mechanism
phonons
pi mesons
pion nucleon interaction
plasma resonance
positive correlation
potential well
pseudo-spin model for superconductivity
QCD
qualitatively different
quantum field theory
quantum field theory
quantum mechanical tunnelling
quantum of flux
quark confinement
quarks
quasiparticle damping
quasiparticles
relaxation rate
renormalization methods
resistance minimum
retardation effects
reverse coherence factor
room temperature superconductivity
rotational objects
scattering matrix approach
second order phase transition
semiconductor surface physics
shift
short
single pair
single particle excitation spectrum
single particle spectrum
singular
spatial dependence
spatial direction
specific eat
Specific heat
speed of light
spin
spin zero
string theory
strong coupling effects
sub-matrices
superconducting energy gap
superconducting gap
superconducting state
superconducting tunnelling
supercurrent
supercurrent
supercurrent
superfluid density
superposition of quasi-particles
tachyon
Tc
Tc
temperature
theorem of Schaffroth
theory of superconductivity
there is something wrong with physics
thermal effects
thermodynamic properties
thermodynamics
thermodynamics
thin films
tin oxide
to discover something, you have to understand what you do
Tomonaga approach
transferred
transition between coherent BCS pairs and bosons
tunnel
tunnel barrier
tunnel barrier
tunnel junctions
tunnelling
tunnelling
tunnelling in semiconductors
tunnelling microscope
ultradense hadronic matter
ultrasonic
ultrasonic attenuation
variational solution
virtual transitions
wave function
We read all the time
weak coupling
z-direction
zero
zero momentum
zero momentum
zero momentum pairs
zero temperature
zero voltage current
zero voltage supercurrent

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