Presentation 2010-10-19
Numerical analysis on the exclusion effect of magnetic field on superconducting thin film by using TDGL equation
Saki TSUTSUMI, Naoki MITAMURA, Hiroyuki AKAIKE, Masumi INOUE, Akira FUJIMAKI,
PDF Download Page PDF download Page Link
Abstract(in Japanese) (See Japanese page)
Abstract(in English) We examine the behavior of vortices in superconducting thin films next to moats using numerical analysis of the solution to the time-dependent Ginzburg-Landau (TDGL) equation. In particular, we investigate the orbit, velocity and acceleration of vortices in superconducting thin films after the transition to superconductors. The simulation results show that the vortex migrate into the moat perpendicularly and the acceleration of the vortex increased exponentially as the distance between the vortex and moats was shorter. It is found that the force form moats is smaller and the vortex generated at a greater distance from the moats migrate closer to the moats with κ is larger.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) vortex / TDGL equation / moat
Paper # SCE2010-29
Date of Issue

Conference Information
Committee SCE
Conference Date 2010/10/12(1days)
Place (in Japanese) (See Japanese page)
Place (in English)
Topics (in Japanese) (See Japanese page)
Topics (in English)
Chair
Vice Chair
Secretary
Assistant

Paper Information
Registration To Superconductive Electronics (SCE)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Numerical analysis on the exclusion effect of magnetic field on superconducting thin film by using TDGL equation
Sub Title (in English)
Keyword(1) vortex
Keyword(2) TDGL equation
Keyword(3) moat
1st Author's Name Saki TSUTSUMI
1st Author's Affiliation Department of Quantum Engineering, Nagoya University()
2nd Author's Name Naoki MITAMURA
2nd Author's Affiliation Department of Quantum Engineering, Nagoya University
3rd Author's Name Hiroyuki AKAIKE
3rd Author's Affiliation Department of Quantum Engineering, Nagoya University
4th Author's Name Masumi INOUE
4th Author's Affiliation Department of Quantum Engineering, Nagoya University
5th Author's Name Akira FUJIMAKI
5th Author's Affiliation Department of Quantum Engineering, Nagoya University
Date 2010-10-19
Paper # SCE2010-29
Volume (vol) vol.110
Number (no) 235
Page pp.pp.-
#Pages 6
Date of Issue