Simulations of vortices in a star-shaped plate with an artificial pin

Although a triangular vortex lattice is stable in a bulk type-II superconductor, exotic vortex configurations are expected to appear in a small superconducting plate. Theoretical calculations on vortex structures in a star-shaped superconducting plate have been given in our preceding work. In this w...

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Veröffentlicht in:Journal of physics. Conference series 2017-07, Vol.871 (1), p.12027
Hauptverfasser: Miyoshi, Hiroki, Ito, Atsuki, Dang, Vu The, Huy, Ho Thanh, Hayashi, Masahiko, Kato, Masaru, Ishida, Takekazu
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Sprache:eng
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Zusammenfassung:Although a triangular vortex lattice is stable in a bulk type-II superconductor, exotic vortex configurations are expected to appear in a small superconducting plate. Theoretical calculations on vortex structures in a star-shaped superconducting plate have been given in our preceding work. In this work, we extended our theoretical studies to the case of having an artificial pin. We performed the Ginzburg-Landau (GL) calculations systematically to compare with the pin-free case by using the finite element method. We found that a vortex tends to accommodate preferentially in an aritificial pin in the star-shaped plate. We found a systematic evolution of vortex structure with increaseing magnetic field. We compare our theoretical calculations with vortices in a star-shaped Mo80Ge20 plate with an artificial pin and without an artificial pin obtained by a scanning SQUID microscope. We reconstructed the vortex image on the sample surface by using the inverse Biot-Savart law and the Fourier transformation.
ISSN:1742-6588
1742-6596
DOI:10.1088/1742-6596/871/1/012027