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Current distribution in Y-Ba-Cu-O superconducting microbridges containing pi-shaped channel for easy vortex motion

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acpa_Vol119_No2_183-185_Sulcas.pdf (858.3Kb)
Date
2011
Author
Šulcas, J.
Steponavičienė, Lina
Jukna, Artūras
Jung, Grzegorz
Plaušinaitienė, Valentina
Abrutis, Adulfas
Gong, M.
Sobolevski, R.
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Abstract
A mixed state in dc-biased thin films of II-type superconductors realizes the Abrikosov magnetic vortices/ antivortices, which are the result of the current-self magnetic field penetration into the film at temperatures lower than its critical temperature Tc. A nucleation of vortices/antivortices at the superconducting film’s edges, their motion perpendicular to the direction of biasing current, and the annihilation in the film’s center originates from a current dissipation in the superconductor and expresses itself in experiments as a dc voltage. This work reports on the results of simulation of current density in a 50 ¹m wide, 100 ¹m long, and 0.3 ¹m thick YBa2Cu3O7¡x microbridges containing ¦-shaped 5 ¹m wide single channel of easy vortex motion fabricated by means of laser-writing technique. Analyzing a two-dimensional-net of resistors and assuming that, due to the Meissner–Ochsenfeld effect, the magnetic flux penetration into superconducting film is nonlinear, we demonstrate that presence of a ¦-shaped channel causes a non-homogeneous distribution of current in the microbridge.
Issue date (year)
2011
URI
https://etalpykla.vilniustech.lt/handle/123456789/148360
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  • Straipsniai Web of Science ir/ar Scopus referuojamuose leidiniuose / Articles in Web of Science and/or Scopus indexed sources [7946]

 

 

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