2007
DOI: 10.1103/physrevb.76.094521
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One-dimensional resistive states in quasi-two-dimensional superconductors: Experiment and theory

Abstract: We investigate competition between one-and two-dimensional topological excitations-phase slips and vortices-in the formation of resistive states in quasi-two-dimensional superconductors in a wide temperature range below the mean-field transition temperature T C0 . The widths w = 100 nm of our ultrathin NbN samples are substantially larger than the Ginzburg-Landau coherence length = 4 nm, and the fluctuation resistivity above T C0 has a two-dimensional character. However, our data show that the resistivity belo… Show more

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Cited by 42 publications
(69 citation statements)
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“…The voltage is linearly related to this rate difference.͔ We note that the linear V − I characteristic has been reported for narrow strips in some literatures. [15][16][17] In this paper, we will focus on the narrow strips of width w ϳ 10 and investigate the thermally activated phase slips responsible for current dissipation. The typical width considered here is actually close to the characteristic dimension for the crossover from 2D strip to 1D wire.…”
Section: Basic Considerations and Assumptionsmentioning
confidence: 99%
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“…The voltage is linearly related to this rate difference.͔ We note that the linear V − I characteristic has been reported for narrow strips in some literatures. [15][16][17] In this paper, we will focus on the narrow strips of width w ϳ 10 and investigate the thermally activated phase slips responsible for current dissipation. The typical width considered here is actually close to the characteristic dimension for the crossover from 2D strip to 1D wire.…”
Section: Basic Considerations and Assumptionsmentioning
confidence: 99%
“…Phase slips of the first kind are numerically obtained when the strip acts as a 1D wire, with the order parameter uniformly distributed along the y direction across the strip. The corresponding saddle point will be called the phase-slip-strip ͑PSS͒ solution 16 and denoted by s…”
Section: B Metastable States Saddle Points and Phase Slipsmentioning
confidence: 99%
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