TY - JOUR
T1 - The Effect of Inhomogeneous Phase on the Critical Temperature of Smart Meta-superconductor MgB2
AU - Chen, Honggang
AU - Li, Yongbo
AU - Chen, Guowei
AU - Xu, Longxuan
AU - Zhao, Xiaopeng
N1 - Publisher Copyright:
© 2018, Springer Science+Business Media, LLC, part of Springer Nature.
PY - 2018/10/1
Y1 - 2018/10/1
N2 - The critical temperature (TC) of MgB2, one of the key factors limiting its application, is highly desired to be improved. On the basis of the meta-material structure, we prepared a smart meta-superconductor structure consisting of MgB2 micro-particles and inhomogeneous phases by an ex situ process. The effect of inhomogeneous phase on the TC of smart meta-superconductor MgB2 was investigated. Results showed that the onset temperature (TCon) of doping samples was lower than those of pure MgB2. However, the offset temperature (TCoff) of the sample doped with Y2O3:Eu3+ nanosheets with a thickness of 2 ∼ 3 nm which is much less than the coherence length of MgB2 is 1.2 K higher than that of pure MgB2. The effect of the applied electric field on the TC of the sample was also studied. Results indicated that with the increase of current, TCon is slightly increased in the samples doping with different inhomogeneous phases. With increasing current, the TCoff of the samples doped with nonluminous inhomogeneous phases was decreased. However, the TCoff of the luminescent inhomogeneous phase doping samples increased and then decreased with increasing current.
AB - The critical temperature (TC) of MgB2, one of the key factors limiting its application, is highly desired to be improved. On the basis of the meta-material structure, we prepared a smart meta-superconductor structure consisting of MgB2 micro-particles and inhomogeneous phases by an ex situ process. The effect of inhomogeneous phase on the TC of smart meta-superconductor MgB2 was investigated. Results showed that the onset temperature (TCon) of doping samples was lower than those of pure MgB2. However, the offset temperature (TCoff) of the sample doped with Y2O3:Eu3+ nanosheets with a thickness of 2 ∼ 3 nm which is much less than the coherence length of MgB2 is 1.2 K higher than that of pure MgB2. The effect of the applied electric field on the TC of the sample was also studied. Results indicated that with the increase of current, TCon is slightly increased in the samples doping with different inhomogeneous phases. With increasing current, the TCoff of the samples doped with nonluminous inhomogeneous phases was decreased. However, the TCoff of the luminescent inhomogeneous phase doping samples increased and then decreased with increasing current.
KW - Applied electric field⋅ T
KW - Inhomogeneous phase
KW - Smart meta-superconductor MgB
KW - YO:Eu nanosheets
UR - http://www.scopus.com/inward/record.url?scp=85042225539&partnerID=8YFLogxK
U2 - 10.1007/s10948-018-4599-6
DO - 10.1007/s10948-018-4599-6
M3 - 文章
AN - SCOPUS:85042225539
SN - 1557-1939
VL - 31
SP - 3175
EP - 3182
JO - Journal of Superconductivity and Novel Magnetism
JF - Journal of Superconductivity and Novel Magnetism
IS - 10
ER -