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Josephson effects in weakly coupled MgB2 intergrain nanobridges prepared by focused ion beam

Authors
Lee, Soon-GulHong, Sung-HakSeong, Won KyungKang, Won Nam
Issue Date
16-11월-2009
Publisher
AMER INST PHYSICS
Keywords
electrical resistivity; fluctuations in superconductors; focused ion beam technology; grain boundaries; Josephson effect; magnesium compounds; nanofabrication; nanostructured materials; superconducting materials; superconducting thin films; superconducting transitions
Citation
APPLIED PHYSICS LETTERS, v.95, no.20
Indexed
SCIE
SCOPUS
Journal Title
APPLIED PHYSICS LETTERS
Volume
95
Number
20
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/118917
DOI
10.1063/1.3266827
ISSN
0003-6951
Abstract
We have fabricated weakly coupled intergrain nanobridges from MgB2 films by a focused ion beam (FIB) patterning technique and studied their transition properties. The bridges were nominally 300 nm wide and 100 nm long, and crossed a single grain boundary perpendicularly. The temperature-dependent resistance data showed a two-step transition after FIB pattern with more-than-two-decade increase in the resistivity. Current-voltage curves showed the characteristics of an ideal Josephson junction. The measured data were perfectly matched with the theory of the resistively shunted junction model with thermal fluctuations at all measured temperatures. At 4.2 K, the measured data showed the effect of hysteresis in agreement with the estimated McCumber parameter beta(c)>0.3. The hysteresis effect disappeared above 6 K. The critical currents obtained from fitting to the RSJ model were linearly dependent on temperature, implying that the grain boundary played an insulating barrier.
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