Gapless excitations in strongly fluctuating superconducting wires
arXiv:1108.1704 · doi:10.1103/PhysRevLett.107.227004
Abstract
We study the low temperature tunneling density of states of thin wires where superconductivity is destroyed through quantum phase-slip proliferation. Although this regime is believed to behave as an insulator, we show that for a large temperature range this phase is characterized by a conductivity falling off at most linearly with temperature, and has a gapless excitation spectrum. This novel conducting phase results from electron-electron interaction induced pair breaking. Also, it may help clarify the low temperature metallic features found in films and wires whose bulk realization is superconducting.
4 pages, 2 figures
References in corpus (6)
- Superconductivity in one dimension
- Universal conductance of nanowires near the superconductor-metal quantum transition
- A synthesis of the phenomenology of the underdoped cuprates
- Fluctuation conductivity of thin films and nanowires near a parallel-field-tuned superconducting quantum phase transition
- Dichotomy in short superconducting nanowires: thermal phase slippage vs. Coulomb blockade
- Universal thermal and electrical transport near the superconductor-metal quantum phase transition in nanowires