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The microwave surface impedance of ultra-pure superconducting metals
Matthias Hein, Rodrigo Ormeno, Colin Gough
Physics and Astronomy
Research output
:
Contribution to journal
›
Letter
5
Citations (Scopus)
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Dive into the research topics of 'The microwave surface impedance of ultra-pure superconducting metals'. Together they form a unique fingerprint.
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Keyphrases
Ultrapure
100%
Microwave Surface Impedance
100%
Partial Derivatives
100%
Relaxation Time
33%
Two-fluid Model
33%
Quasiparticles
33%
Superconducting State
33%
Surface Impedance
33%
Mean Free Path
33%
Effective Relaxation Time
33%
Dielectric Resonator
33%
Pure Metals
33%
Drude
33%
Loss Tangent
33%
DC Conductivity
33%
Classical Limit
33%
Differential Loss
33%
Nonlocal Effect
33%
Hollow
33%
Conductivity Type
33%
Physics
Relaxation Time
100%
Quasiparticle
50%
Two Fluid Model
50%
Loss Tangent
50%
Dielectric Material
50%
Resonator
50%
Mean Free Path
50%
Engineering
Partial Derivative
100%
Relaxation Time
66%
Classical Limit
33%
Mean Free Path
33%
Dielectrics
33%
Measured Data
33%
Two-Fluid Model
33%
Loss Tangent
33%
Resonator
33%
Material Science
Surface (Surface Science)
100%
Electrical Resistivity
50%
Resonator
50%
Dielectric Material
50%