Vortex Dynamics and Dissipation in High Temperature Superconductors — from DC to Microwave Frequencies

1992 ◽  
Vol 275 ◽  
Author(s):  
N.-C. Yeh ◽  
W. Jiang ◽  
D. S. Reed ◽  
U. Kriplani ◽  
F. Holtzberg ◽  
...  

ABSTRACTA second-order vortex-solid melting transition in twinned Y-Ba-Cu-O single crystals is manifested by two independent types of electrical transport measurements: the electric field (E) versus current density (J) isotherms, and the ac resistivity (ρ) vs current frequency (ω) isotherms. Universal static and dynamic exponents (ν ≈ 2/3 and Ζ ≈ 3, respectively) are found for magnetic fields ranging from 1 to 90 kOe, frequencies ranging from 0 to 2 MHz, magnetic directions parallel and perpendicular to the crystal c-axis, as well as samples with and without proton irradiations. At microwave frequencies, we find that the vortex dissipation in Nd-Ce-Cu-O epitaxial films is consistent with the viscous motion of individual vortices, due to the break down of the critical scaling theory in the high frequency limit.

1997 ◽  
Vol 11 (18) ◽  
pp. 2141-2155 ◽  
Author(s):  
N.-C. Yeh ◽  
U. Kriplani ◽  
W. Jiang ◽  
J. Kumar ◽  
H. F. Fong ◽  
...  

The effects of static disorder on the vortex dynamics of type-II superconductors are investigated by comparing the high-frequency vortex response of superconducting amorphous Mo3Si (a- Mo3Si ) films with that of the high-temperature superconductors. We find that for a- Mo3Si films in the three-dimensional limit, the microwave vortex response near the second-order vortex-solid to vortex-liquid glass transitions is consistent with vortex critical relaxation, in contrast to the diffusion vortex dynamics in high-temperature superconductors at the same frequencies. The observation of microwave vortex critical dynamics in a- Mo3Si is attributed to the extremely disordered nature of the amorphous superconductors, which results in a much shorter-range vortex correlation and therefore a faster critical relaxation.


1997 ◽  
Vol 282-287 ◽  
pp. 1943-1944
Author(s):  
N.-C. Yeh ◽  
W. Jiang ◽  
C.C. Fu ◽  
M. Konczykowski ◽  
F. Holtzberg

1996 ◽  
Author(s):  
Dong H. Wu ◽  
Mark Santer ◽  
James C. Booth ◽  
Julia Phillips ◽  
Steven M. Anlage

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