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Quantum fluctuations in superconducting nanostructures
Janne Lehtinen
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Keyphrases
Nanowires
100%
Quantum Fluctuations
100%
Superconducting Nanostructures
100%
Superconducting Nanowire
40%
Coulomb Blockade
20%
Transistor
20%
Josephson Junction
20%
Cooper Pairs
20%
Quantum Phase Slips
20%
Size Reduction
20%
Rutile
20%
Irradiation
20%
Nanofabrication
20%
Size Dependence
20%
Microscopic Analysis
20%
Resistivity
20%
I-V Characteristics
20%
Transport Properties
20%
Electric Voltage
20%
Metrological
20%
Superconducting Materials
20%
Quantum Standards
20%
Titania Nanowires
20%
Measurement Cycle
20%
Effective Diameter
20%
Diameter Growth
20%
No Damage
20%
Dielectric Barrier
20%
Ultra-narrow
20%
Quantum Duality
20%
Slip Process
20%
Ion Milling
20%
Ion Beam Milling
20%
Energetic Ion Beam
20%
Shapiro Effect
20%
Insulating State
20%
High Impedance
20%
INIS
nanostructures
100%
fluctuations
100%
nanowires
100%
dimensions
37%
titanium
25%
milling
25%
environment
12%
physics
12%
size
12%
josephson junctions
12%
singularity
12%
transistors
12%
voltage
12%
one-dimensional calculations
12%
superconductors
12%
cooper pairs
12%
slip
12%
barriers
12%
reduction
12%
transport
12%
comminution
12%
communities
12%
range
12%
damage
12%
accuracy
12%
ions
12%
energetic ions
12%
ion beams
12%
irradiation
12%
impedance
12%
dielectrics
12%
fabrication
12%
contamination
12%
hypothesis
12%
electric conductivity
12%
duality
12%
Physics
Quantum Fluctuation
100%
Nanomaterial
100%
Nanowire
100%
Josephson Junction
12%
Energetics
12%
Ion Beam
12%
Physics
12%
Transport Property
12%
Size Reduction
12%
Dielectric Material
12%
Engineering
Nanomaterial
100%
Nanowire
100%
Singularities
12%
Measurement Cycle
12%
Nanofabrication Process
12%
Energetic Ion
12%
Dielectrics
12%
Size Reduction
12%
Coulomb Blockade
12%
Slip Process
12%
Josephson Junction
12%
Material Science
Nanostructure
100%
Nanowires
100%
Titanium
25%
Superconducting Material
12%
Transistor
12%
Electrical Resistivity
12%
Josephson Junction
12%
Comminution
12%
Dielectric Material
12%