Quantum phase slip phenomenon in superconducting nanowires with low-Ohmic environment
arXiv:1207.2329 · doi:10.1088/0953-2048/25/12/124007
Abstract
In a number of recent experiments it has been demonstrated that in ultra-narrow superconducting channels quantum fluctuations of the order parameter, alternatively called quantum phase slips, are responsible for the finite resistance well below the critical temperature. The acceptable agreement between those experiments and the models describing quantum fluctuations in quasi-one-dimensional superconductors has been established. However the very concept of the phase slip is justified when these fluctuations are the relatively rare events, meaning that the effective resistance of the system should be much smaller than the normal state equivalent. In this paper we study the limit of the strong quantum fluctuations where the existing models are not applicable. In particular case of ultra-thin titanium nanowires it is demonstrated that below the expected critical temperature the resistance does not demonstrate any trend towards the conventional for a superconductor zero-resistivity state even at negligibly small measuring currents. Application of a small magnetic field leads to an unusual negative magnetoresistance, which becomes more pronounced at lower temperatures. The origin of the negative magnetoresistance effect is not clear.
References in corpus (8)
- Coherent quantum phase slip
- Magnetic field enhancement of superconductivity in ultra-narrow wires
- Quantum fluctuations in ultranarrow superconducting nanowires
- Quantum phase slip interference device based on superconducting nanowire
- Quantum phase slip phenomenon in ultra-narrow superconducting nanorings
- Spatially-resolved probing of a non-equilibrium superconductor
- Negative magnetoresistance of ultra-narrow superconducting nanowires in the resistive state
- Negative magnetoresistance and phase slip process in superconducting nanowires
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- Quasi-1-Dimensional Superconductivity in Highly Disordered NbN Nanowires
- Superconducting insulators and localization of Cooper pairs
- Superconducting nanowire quantum interference device based on Nb ultrathin films deposited on self-assembled porous Si templates
- Fluctuations superconductivity and giant negative magnetoresistance in a gate voltage tuned 2D electron liquid with strong spin-orbit impurity scattering