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Temperature dependence of the surface reactance in YBa/sub 2/Cu/sub 3/O/sub 7-/spl delta// thin films measured by using quasi-optical sapphire resonator
By: Barannik, A.A.; Vitusevich, S.A.; Prokopenko, Yu.V.; Cherpak, N.T.; Bunyaev, S.A.;
2004 / IEEE / 0-7803-8411-3
Description
This item was taken from the IEEE Conference ' Temperature dependence of the surface reactance in YBa/sub 2/Cu/sub 3/O/sub 7-/spl delta// thin films measured by using quasi-optical sapphire resonator ' In this present paper the authors deploy a novel technique,a method based on using quasi-optical dielectric resonator (QDR), to measure reactance properties of HTS films at millimeter (mm) frequencies. The technique has been shown earlier to use for accurate measurements of the film surface resistance Rs. However a challenge to analogous measurement of HTS surface reactance still remains. The latter is connected with a number of difficulties which must be overcome in order to obtain Xs from the measurement results as follows: 1) necessity of temperature dependence knowledge of material dielectric constant /spl epsiv/ which the given resonator is made of; 2) some nonreproducibility of eigen frequencies for the QDR with conducting endplates (CEP) at rearrangements of the resonator; 3) absence of rigid electrodynamic analysis of open ODR and impossibility, in this connection, of finding eigen frequencies for the QDR with perfect CEP.
Related Topics
Surface Resistance
Yba/sub 2/cu/sub 3/o/sub 7-/spl Delta//
Temperature Dependence
Surface Reactance
Yb/sub 2/cu/sub 3/o/sub 7-/spl Delta// Thin Films
Quasioptical Sapphire Resonator
Hts Films
Dielectric Constant
Eigen Frequencies
Electrodynamic Analysis
Millimeter Range Properties
Surface Resistance
Temperature Dependence
Dielectric Measurements
Electrical Resistance Measurement
Surface Resistance
Frequency Measurement
High Temperature Superconductors
Conducting Materials
Dielectric Materials
Dielectric Constant
Electrodynamics
Superconducting Epitaxial Layers
High-temperature Superconductors
Barium Compounds
Yttrium Compounds
Electric Reactance
Engineering
Quasioptical Dielectric Resonator