Microwave surface impedance of MgB(2) thin film

Jin BB, Klein N, Kang WN, Kim HJ, Choi EM, Lee SIK, Dahm T, Maki K (2003)
Superconductor Science and Technology 16(2): 205-209.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Jin, BB; Klein, N; Kang, WN; Kim, HJ; Choi, EM; Lee, SIK; Dahm, ThomasUniBi; Maki, K
Abstract / Bemerkung
The microwave surface impedance Z(s) = R(s) + jomegamu(0)lambda was measured with dielectric resonator techniques for two c-axis-oriented MgB(2) thin films. The temperature dependence of the penetration depth, measured with a sapphire resonator at 17.93 GHz can be well fitted from 5 K close to T(c) by the standard BCS integral expression assuming the reduced energy gap Delta(0)/kT(c) to be as low as 1.13 and 1.03 for the two samples. From these fits the penetration depth at zero temperatures was determined to be 102 nm and 107 nm, respectively. The results clearly indicate the s-wave nature of the order parameter. The temperature dependence of surface resistance R(s) measured with a rutile dielectric resonator, shows an exponential behaviour below about T(c)/2 with a reduced energy gap being consistent with the one determined from the, data. The R(s) value at 4.2 K was found to be as low as 19 muOmega at 7.2 GHz, which is comparable with that of a high-quality high-temperature thin film of YBa(2)Cu(3)O(7). A higher-order mode at 17.9 GHz was employed to determine the frequency f dependence of R(s) alpha f(n(T)). Our results revealed a decrease of n with increasing temperature ranging from n = 2 below 8 K to n = 1 from 13 to 34 K.
Erscheinungsjahr
2003
Zeitschriftentitel
Superconductor Science and Technology
Band
16
Ausgabe
2
Seite(n)
205-209
ISSN
0953-2048
Page URI
https://pub.uni-bielefeld.de/record/2330216

Zitieren

Jin BB, Klein N, Kang WN, et al. Microwave surface impedance of MgB(2) thin film. Superconductor Science and Technology. 2003;16(2):205-209.
Jin, B. B., Klein, N., Kang, W. N., Kim, H. J., Choi, E. M., Lee, S. I. K., Dahm, T., et al. (2003). Microwave surface impedance of MgB(2) thin film. Superconductor Science and Technology, 16(2), 205-209. https://doi.org/10.1088/0953-2048/16/2/314
Jin, BB, Klein, N, Kang, WN, Kim, HJ, Choi, EM, Lee, SIK, Dahm, Thomas, and Maki, K. 2003. “Microwave surface impedance of MgB(2) thin film”. Superconductor Science and Technology 16 (2): 205-209.
Jin, B. B., Klein, N., Kang, W. N., Kim, H. J., Choi, E. M., Lee, S. I. K., Dahm, T., and Maki, K. (2003). Microwave surface impedance of MgB(2) thin film. Superconductor Science and Technology 16, 205-209.
Jin, B.B., et al., 2003. Microwave surface impedance of MgB(2) thin film. Superconductor Science and Technology, 16(2), p 205-209.
B.B. Jin, et al., “Microwave surface impedance of MgB(2) thin film”, Superconductor Science and Technology, vol. 16, 2003, pp. 205-209.
Jin, B.B., Klein, N., Kang, W.N., Kim, H.J., Choi, E.M., Lee, S.I.K., Dahm, T., Maki, K.: Microwave surface impedance of MgB(2) thin film. Superconductor Science and Technology. 16, 205-209 (2003).
Jin, BB, Klein, N, Kang, WN, Kim, HJ, Choi, EM, Lee, SIK, Dahm, Thomas, and Maki, K. “Microwave surface impedance of MgB(2) thin film”. Superconductor Science and Technology 16.2 (2003): 205-209.
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