ANALYSIS OF EFFECTIVE COUPLING STRENGTH IN HIGH-FREQUENCY SQUIDS

被引:1
|
作者
GOTTSCHLICH, M [1 ]
SODTKE, E [1 ]
ZHANG, Y [1 ]
PORTIS, AM [1 ]
机构
[1] UNIV CALIF BERKELEY, DEPT PHYS, BERKELEY, CA 94720 USA
关键词
D O I
10.1063/1.360508
中图分类号
O59 [应用物理学];
学科分类号
摘要
Understanding the coupling mechanism between SQUID (superconducting quantum interference device) loop and resonator in high-frequency SQUIDs is essential for the application of these devices in sensitive magnetometers or controllable microwave devices. We have investigated, therefore, two kinds of planar microstrip tank circuit resonators: (1) S-shaped lambda/2-resonators with direct or indirect coupling to the SQUID loop with optional flux-focussing pads and (2) conventional rf-washer-SQUID structures for which we have found resonant modes of the washer providing a coupling to the SQUID loop. A lumped element representation of SQUID loop and resonator is presented in order to describe the effective SQUID-resonator coupling in case of direct or indirect coupling. According to this approach, the square of-the effective coupling constant k in both cases is equal to the ratio of the magnetic energy stored in the SQUID loop to that stored in the resonator. For the indirect coupled S-shaped lambda/2-resonators, k can be described in terms of a geometry-defined mutual inductance. The predictions of the lumped element description are compared with simulations using a standard full-wave analysis computer program in order to quantify the effect of the different layouts on microwave current distribution and on k. A method for the determination of k by simulation is described, leading to useful design rules for the optimization of high-frequency SQUIDs. The simulation results will also be compared with experimental data. (C) 1995 American Institute of Physics.
引用
收藏
页码:6276 / 6282
页数:7
相关论文
共 50 条
  • [1] Analysis of effective coupling strength in high-frequency SQUIDs
    Gottschlich, M.
    Sodtke, E.
    Zhang, Y.
    Portis, A.M.
    Journal of Applied Physics, 1995, 78 (10):
  • [2] High-frequency stochastic resonance in SQUIDs
    Phys Lett Sect A Gen At Solid State Phys, 4-5 (219):
  • [3] High-frequency stochastic resonance in SQUIDS
    Kaufman, IK
    Luchinsky, DG
    McClintock, PVE
    Soskin, SM
    Stein, ND
    PHYSICS LETTERS A, 1996, 220 (4-5) : 219 - 223
  • [4] PERFORMANCE-FACTORS IN RF SQUIDS - HIGH-FREQUENCY LIMIT
    BUHRMAN, RA
    JACKEL, LD
    IEEE TRANSACTIONS ON MAGNETICS, 1977, 13 (01) : 879 - 882
  • [5] THIN-FILM HIGH-FREQUENCY SQUIDS WITH MICROBRIDGE CONTACTS
    ANTONOVA, IY
    ZAKOSARENKO, VM
    ILICHEV, EV
    ROZENFLANTS, VI
    TULIN, VA
    ZHURNAL TEKHNICHESKOI FIZIKI, 1990, 60 (03): : 135 - 140
  • [6] An Effective Approach for High-Frequency Electromagnetic Field-to-Line Coupling Analysis Based on Regularization Techniques
    Brignone, Massimo
    Delfino, Federico
    Procopio, Renato
    Rossi, Mansueto
    Rachidi, Farhad
    Tkachenko, Sergey V.
    IEEE TRANSACTIONS ON ELECTROMAGNETIC COMPATIBILITY, 2012, 54 (06) : 1289 - 1297
  • [7] High-Frequency Characteristics of Dc-SQUIDs with Magnetic Nanoparticle Patterns
    Ito, Hiroshi
    Taniguchi, Soya
    Okumura, Takayuki
    Akaike, Hiroyuki
    Fujimaki, Akira
    2013 IEEE 14TH INTERNATIONAL SUPERCONDUCTIVE ELECTRONICS CONFERENCE (ISEC), 2013,
  • [8] Effective coupling of rapid freeze-quench to high-frequency electron paramagnetic resonance
    Panarelli, E. Gabriele
    van Der Mee, Harmen
    Gast, Peter
    Groenen, Edgar J. J.
    PLOS ONE, 2020, 15 (05):
  • [9] Research on a high-frequency unfilled layered symmetrical piezoelectric material with a high effective electromechanical coupling coefficient
    Rong, Tian
    Wang, ChenXu
    FERROELECTRICS LETTERS SECTION, 2023, 50 (1-3) : 1 - 19
  • [10] Transformer coupling circuits for high-frequency amplifiers
    Christopher, AJ
    BELL SYSTEM TECHNICAL JOURNAL, 1932, 11 : 608 - 621