On the pinning force in high density MgB2 samples

被引:0
|
作者
V. Sandu
A. M. Ionescu
G. Aldica
M. A. Grigoroscuta
M. Burdusel
P. Badica
机构
[1] National Institute of Materials Physics,
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
An analysis of the field dependence of the pinning force in different, high density sintered samples of MgB2 is presented. The samples were chosen to be representative for pure MgB2, MgB2 with additives, and partially oriented massive samples. In some cases, the curves of pinning force versus magnetic field of the selected samples present peculiar profiles and application of the typical scaling procedures fails. Based on the percolation model, we show that most features of the field dependence of the critical force that generate dissipation comply with the Dew-Hughes scaling law predictions within the grain boundary pinning mechanism if a connecting factor related to the superconducting connection of the grains is used. The field dependence of the connecting function, which is dependent on the superconducting anisotropy, is the main factor that controls the boundary between dissipative and non-dissipative current transport in high magnetic field. Experimental data indicate that the connecting function is also dependent on the particular properties (e.g., the presence of slightly non-stoichiometric phases, defects, homogeneity, and others) of each sample and it has the form of a single or double peaked function in all investigated samples.
引用
收藏
相关论文
共 50 条
  • [31] CrB2 Doping Effects on Critical Current Density and Flux Pinning of MgB2
    Zhao, Yong
    Ke, Chuan
    Yang, Ye
    Hsieh, Chang Chun
    Zhou, Daijin
    Cheng, Cuihua
    Zhang, Yong
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2019, 29 (02)
  • [32] Possible origin of double-peak Behavior of the pinning-force density in thick MgB2 films with columnar structures
    Jung, Soon-Gil
    Seong, W. K.
    Lee, N. H.
    Ranot, Mahipal
    Kang, W. N.
    JOURNAL OF THE KOREAN PHYSICAL SOCIETY, 2008, 53 (02) : 727 - 731
  • [33] Surface Barrier and Bulk Pinning in MgB2 Superconductor
    M. Pissas
    E. Moraitakis
    D. Stamopoulos
    G. Papavassiliou
    V. Psycharis
    S. Koutandos
    Journal of Superconductivity, 2001, 14 : 615 - 621
  • [34] Artificial pinning centers in MgB2 superconducting bulks
    Da Silva, L. B. S.
    Serquis, A.
    Hellstrom, E. E.
    Rodrigues, D., Jr.
    SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 2020, 33 (04):
  • [35] Vortex dynamics and pinning properties analysis of MgB2 bulk samples by ac susceptibility measurements
    Senatore, C
    Polichetti, M
    Zola, D
    Di Matteo, T
    Giunchi, G
    Pace, S
    SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 2003, 16 (02): : 183 - 187
  • [36] Pinning characteristics of MgB2 near the melting curve
    Yau, JKF
    Qin, MJ
    Liu, HK
    Dou, SX
    Lee, CM
    Hani, YS
    Shen, LJ
    Jin, X
    SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 2002, 15 (04): : 619 - 623
  • [37] Effects of C substitution on the pinning mechanism of MgB2
    Wang, J. L.
    Zeng, R.
    Kim, J. H.
    Lu, L.
    Dou, S. X.
    PHYSICAL REVIEW B, 2008, 77 (17)
  • [38] Pinning enhancement in Mo/MgB2 bulk system
    Kimishima, Y.
    Goto, H.
    Ishii, H.
    Uehara, M.
    Kuramoto, T.
    PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2010, 470 : S666 - S668
  • [39] Pinning properties of Ag/MgB2 bulk system
    Kimishima, Y.
    Takami, S.
    Uehara, M.
    Numa, S.
    Sugiyama, Y.
    Kuramoto, T.
    PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2008, 468 (15-20): : 1181 - 1184
  • [40] Effective vortex pinning in MgB2 thin films
    Bugoslavsky, Y
    Cowey, L
    Tate, TJ
    Perkins, GK
    Moore, J
    Lockman, Z
    Berenov, A
    MacManus-Driscoll, JL
    Caplin, AD
    Cohen, LF
    Zhai, HY
    Christen, HM
    Paranthaman, MP
    Lowndes, DH
    Jo, MH
    Blamire, MG
    SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 2002, 15 (10): : 1392 - 1397