Surface impedance and optimum surface resistance of a superconductor with imperfect surface
arXiv:1711.03077 · doi:10.1103/PhysRevB.96.184515
Abstract
We calculate a low-frequency surface impedance of a dirty, s-wave superconductor with an imperfect surface incorporating either a thin layer with a reduced pairing constant or a thin, proximity-coupled normal layer. Such structures model realistic surfaces of superconducting materials which can contain oxide layers, absorbed impurities or nonstoichiometric composition. We solved the Usadel equations self-consistently and obtained spatial distributions of the order parameter and the quasiparticle density of states which then were used to calculate a low-frequency surface resistance and the magnetic penetration depth as functions of temperature in the limit of local London electrodynamics. It is shown that the imperfect surface in a single-band s-wave superconductor results in a non-exponential temperature dependence of at which can mimic the behavior of multiband or d-wave superconductors. The imperfect surface and the broadening of the gap peaks in the quasiparticle density of states in the bulk give rise to a weakly temperature-dependent residual surface resistance. We show that the surface resistance can be optimized and even reduced below its value for an ideal surface by engineering at the surface using pairbreaking mechanisms, particularly, by incorporating a small density of magnetic impurities or by tuning the thickness and conductivity of the normal layer and its contact resistance. The results of this work address the limit of in superconductors at , and the ways of engineering the optimal density of states by surface nano-structuring and impurities to reduce losses in superconducting micro-resonators, thin film strip lines, and radio frequency cavities for particle accelerators.
References in corpus (5)
- Ultra-high quality factors in superconducting niobium cavities in ambient magnetic fields up to 190 mG
- Electrodynamics of electron doped iron-pnictide superconductors: Normal state properties
- Reduction of Dissipative Nonlinear Conductivity of Superconductors by Static and Microwave Magnetic Fields
- Electromagnetic properties of impure superconductors with pair-breaking processes
- Minigap in a SN junction with paramagnetic impurities
Cited by in corpus (26)
- Searching For Dark Matter with Plasma Haloscopes
- Effects of nonmagnetic impurities and subgap states on the kinetic inductance, complex conductivity, quality factor and depairing current density
- Niobium in clean limit: an intrinsic type-I superconductor
- Tuning microwave losses in superconducting resonators
- Smooth, homogeneous, high-purity Nb3Sn superconducting RF resonant cavity by seed-free electrochemical synthesis
- Effect of random pinning on nonlinear dynamics and dissipation of a vortex driven by a strong microwave current
- Surface oxides, carbides, and impurities on RF superconducting Nb and Nb3Sn: A comprehensive analysis
- Impact of border defects on the magnetic flux penetration in superconducting films
- Tuning critical field, critical current, and diode effect of narrow thin-film superconductors through engineering inhomogeneous Pearl length
- Electromagnetic Response of Disordered Superconducting Cavities
- Measurements of the amplitude-dependent microwave surface resistance of an Au/Nb bilayer
- How High a Field Can Be and Has Been Achieved in Superconducting Bulk Niobium Cavities Across Different RRR Values?
- A Time-Dependent Ginzburg-Landau Framework for Sample-Specific Simulation of Superconductors for SRF Applications
- Higgs-mode-induced instability and kinetic inductance in strongly dc-biased dirty-limit superconductors
- Depth-resolved Characterization of Meissner Screening Breakdown in Surface Treated Niobium
- Quasiparticle spectroscopy in technologically-relevant niobium using London penetration depth measurements
- Disentangling superconductor and dielectric microwave losses in sub-micron / interconnects using a multi-mode microstrip resonator
- The Frequency Shift and Q of Disordered Superconducting RF Cavities
- Peculiarities of the density of states in SN junctions
- Significant improvement of the lower critical field in Y doped Nb: potential replacement of basic material for the radio-frequency superconducting cavity
- Surface density of states in superconductors with inhomogeneous pairing constant: Analytical results
- Nonequilibrium nonlinear response theory of amplitude-dependent dissipative conductivity in disordered superconductors
- Scanning tunneling spectroscopy of superconducting nitridized aluminum thin films
- Vortex Pinning in Niobium covered by a thin polycrystalline Gold
- RF surface resistance tuning of superconducting niobium via thermal diffusion of native oxide
- On the Applicability Ranges of Tc Formulas for Proximity-Coupled Thin SN and SS Bilayers