Evidence of the disorder-independent electron-phonon scattering time in thin NbN films
arXiv:2207.05012 · doi:10.1103/PhysRevB.107.054205
Abstract
We report on experimental study of the effect of disorder on electronic parameters and inelastic scattering mechanisms in ultrathin superconducting NbN films, which are commonly used in single-photon detectors. An increase in disorder in the studied 2.5 nm thick NbN films characterized by Ioffe-Regel parameter from 6.3 to 1.6 is accompanied by a decrease in the critical temperature from 11.5 K to 3.4 K. By measuring magnetoconductance in the range from to , we extract the inelastic scattering rates of electrons, including electron-phonon (e-ph) scattering rates . We observe that and their temperature dependencies are insensitive to disorder that is not described by the existing models of the e-ph scattering in disordered metals and can be due to the presence of weakly disordered metal grains. As the temperature decreases the temperature dependence changes from to , which can be result of a decrease in the dimension of the phonons involved in the e-ph scattering. The obtained values of material parameters of ultrathin NbN films can be useful for optimization of performance of NbN-based electronic devices.
14 pages, 9 figures
References in corpus (11)
- Superconducting properties and Hall Effect of epitaxial NbN thin films
- Theory of single photon detection by 'dirty' current-carrying superconducting strip based on the kinetic equation approach
- Quantum breakdown of superconductivity in low-dimensional materials
- Quantized current steps due to the a.c. coherent quantum phase-slip effect
- Phonon-trapping enhanced energy resolution in superconducting single photon detectors
- Temperature dependence of resistivity and Hall-coefficient in a strongly disordered metal: NbN
- Frequency dependent superfluid stiffness in the pseudogap regime in strongly disordered NbN thin films
- Observation of disorder-induced weakening of electron-phonon interaction in thin noble metal films
- Phase diagram and upper critical field of homogenously disordered epitaxial 3-dimensional NbN films
- Hall Coefficient in an Interacting Electron Gas
- Self-Heating Hotspots in Superconducting Nanowires Cooled by Phonon Black-Body Radiation
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