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A comparative study of the dendritic avalanche in MgB2 thin films synthesized by pulsed laser deposition and hybrid physical chemical vapor deposition methods SCIE SCOPUS

Title
A comparative study of the dendritic avalanche in MgB2 thin films synthesized by pulsed laser deposition and hybrid physical chemical vapor deposition methods
Authors
Lee, JYLee, HJLee, SIZhuang, CGWang, YZFeng, QRGan, ZZXi, XXChoi, EMCho, JHJo, YH
Date Issued
2009-04-15
Publisher
AMER INST PHYSICS
Abstract
It is known that MgB2 thin films synthesized by using hybrid physical chemical vapor deposition (HPCVD) do not show dendritic avalanche, which is in contrast to those prepared by using pulsed laser deposition (PLD). To find the cause that makes the difference between the two cases, we studied the microscopic film structure by the scanning electron microscopy and the magnetic hysteresis by using the superconducting quantum interference device magnetometry. The critical current density (J(c)), estimated from the magnetic hysteresis based on the Bean's critical-state model, shows a much higher J(c) in the PLD film than in a HPCVD film. This indicates higher vortex pinning in the PLD film. We surmise that high local joule heating beyond the high J(c) in the PLD film, as a vortex penetrates into the superconducting thin film, gives a path for the next vortex and induces a positive feedback effect that is absent in the HPCVD film.
URI
https://oasis.postech.ac.kr/handle/2014.oak/10623
DOI
10.1063/1.3095661
ISSN
0021-8979
Article Type
Article
Citation
JOURNAL OF APPLIED PHYSICS, vol. 105, no. 8, page. 83904 - 83904-3, 2009-04-15
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