MICROWAVE RESPONSE OF NANOSTRUCTURED HIGH-Tc SUPERCONDUCTOR THIN FILMS

被引:3
|
作者
Borisenko, P. A. [1 ]
Pokusinskii, A. O. [1 ]
Kasatkin, A. L. [2 ]
机构
[1] Taras Shevchenko Natl Univ, Fac Radio Phys Elect & Comp Syst, 4-G,Glushkov Ave, UA-03187 Kiev, Ukraine
[2] Nat Acad Sci Ukraine, Inst Met Phys, 36 Acad Vernadsky Blvd, UA-03142 Kiev, Ukraine
来源
UKRAINIAN JOURNAL OF PHYSICS | 2019年 / 64卷 / 10期
关键词
high-T-c superconductor; nanoparticles; nanorods; radiation defects; microwave frequency; surface resistance; Abrikosov vortices; SURFACE IMPEDANCE; YBA2CU3O7-X FILMS; RESISTANCE; RANGE;
D O I
10.15407/ujpe64.10.969
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
A model for the microwave response of a nanostructured high-T-c superconductor (HTS) film, with implanted nanoparticles and nanorods of a dielectric material or point-like and columnar irradiation defects with a nano-sized cross-section is developed. In this case, the microwave surface resistance R-s (T, H, omega) is calculated both for the Meissner and mixed states of a superconductor film in an applied dc magnetic field. The obtained results indicate that the implantation of dielectric nanoparticles or point-like radiation defects can significantly improve superconductor characteristics at microwave frequencies. Namely, these nano-sized structural defects can decrease the surface resistance in the Meissner state and eliminate the oscillations of Abrikosov vortices and the related microwave energy losses, thus decreasing the contribution of Abrikosov vortices to the R-s value in the mixed state of a HTS film.
引用
收藏
页码:969 / 974
页数:6
相关论文
共 50 条
  • [21] Growth of high-Tc thin films
    Wördenweber, R
    SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 1999, 12 (06): : R86 - R102
  • [22] HIGH-TC SUPERCONDUCTOR
    WU, HS
    WENG, ZY
    SOLID STATE COMMUNICATIONS, 1987, 63 (04) : 269 - 269
  • [23] Microwave response of high-Tc superconductors
    Gallitto, AA
    Ciccarello, I
    Guccione, M
    Vigni, HL
    Adorno, DP
    PAIR CORRELATIONS IN MANY-FERMION SYSTEMS, 1998, : 111 - 131
  • [24] Growth of high-Tc thin films
    Wördenweber, R.
    Superconductor Science and Technology, 1999, 12 (06):
  • [25] SCALING SPONTANEOUS FLUCTUATIONS IN HIGH-TC SUPERCONDUCTOR FILMS
    KISS, LB
    SVEDLINDH, P
    LUNDGREN, L
    HUDNER, J
    OHLSEN, H
    STOLT, L
    GINGL, Z
    PHYSICA B, 1991, 172 (04): : 441 - 444
  • [26] Sheet currents retrieval in high-Tc superconductor films
    Zhilin, AV
    Gaikovich, KP
    Nozdrin, YN
    Reznik, AN
    MMET 2000: INTERNATIONAL CONFERENCE ON MATHEMATICAL METHODS IN ELECTROMAGNETIC THEORY, VOLS 1 AND 2, CONFERENCE PROCEEDINGS, 2000, : 601 - 603
  • [27] GROWTH, CHARACTERIZATION AND MICROSTRUCTURE OF HIGH-TC SUPERCONDUCTOR FILMS
    YUE, AS
    YANG, CS
    JOURNAL OF METALS, 1988, 40 (11): : 25 - 25
  • [28] LASER DEPOSITION OF QUALITY HIGH-TC SUPERCONDUCTOR FILMS
    CHANG, CC
    VENKATESAN, T
    WU, XD
    INAM, A
    CHASE, EW
    HWANG, DM
    TARASCON, JM
    BARBOUX, P
    ENGLAND, P
    WILKENS, BJ
    IEEE TRANSACTIONS ON MAGNETICS, 1989, 25 (02) : 2441 - 2444
  • [29] RAMAN MICROPROBE ANALYSIS OF PATTERNED HIGH-TC SUPERCONDUCTOR (YBCO) THIN-FILMS
    JIMENEZ, J
    MARTIN, E
    MARTIN, P
    TORRES, A
    MATERIALS RESEARCH BULLETIN, 1995, 30 (06) : 771 - 778
  • [30] HIGH-TC FILMS BREAK MICROWAVE BARRIERS
    GALLOP, J
    PHYSICS WORLD, 1991, 4 (05) : 21 - 22