The phenomenon of temperature-dependent phase reversal of the nonresonant electromagnetic response of the high-Tc superconductors is studied in the rf and the microwave ranges. Phase reversal is the changeover from a maximum at zero magnetic field and the decrease with the increasing field to a minimum at zero field and the increase with the increasing field. The results are analyzed using an effective-medium theory, treating the sample as a percolating network consisting of the superconducting regions separated by normal metallic regions. The experimental observations are shown to follow naturally from the dependence of the superconducting fraction on the temperature and the magnetic field
The field-dependent nonresonant absorption at microwave (9.1 GHz) and radio (19.5 MHz) frequencies h...
(Bi,Pb)-Sr-Ca-Cu-O is considered as a system of 2201, 2212 and 2223 superconductors embedded in the ...
We address the problem of nonequilibrium superconductivity in the presence of microwave irradiation....
The phenomenon of temperature-dependent phase reversal of the nonresonant electromagnetic response o...
Restricted AccessThe phenomenon of temperature-dependent phase reversal of the nonresonant electroma...
It is shown that frequency modulation combined with phase sensitive detection provides a better (tha...
Non-resonant microwave absorption is studied as a function of temperature and composition in superco...
Non-resonant microwave absorption is studied as a function of temperature and composition in superco...
Non-resonant microwave absorption is studied as a function of temperature and composition in superco...
Substantial field-dependent microwave absorption is found in superconducting materials of the YBa2Cu...
The magnetic field dependent dissipative processes in the mixed state of HTSC give rise to intense, ...
It is shown that measuring microwave absorption in high-Tc superconductors at constant and very low ...
We theoretically investigate intermodulation distortion in high- Tc superconductors. We study the ef...
A strong microwave absorption at low magnetic fields is observed for a variety of metallic cuprates ...
The field-dependent nonresonant absorption at microwave (9.1 GHz) and radio (19.5 MHz) frequencies h...
The field-dependent nonresonant absorption at microwave (9.1 GHz) and radio (19.5 MHz) frequencies h...
(Bi,Pb)-Sr-Ca-Cu-O is considered as a system of 2201, 2212 and 2223 superconductors embedded in the ...
We address the problem of nonequilibrium superconductivity in the presence of microwave irradiation....
The phenomenon of temperature-dependent phase reversal of the nonresonant electromagnetic response o...
Restricted AccessThe phenomenon of temperature-dependent phase reversal of the nonresonant electroma...
It is shown that frequency modulation combined with phase sensitive detection provides a better (tha...
Non-resonant microwave absorption is studied as a function of temperature and composition in superco...
Non-resonant microwave absorption is studied as a function of temperature and composition in superco...
Non-resonant microwave absorption is studied as a function of temperature and composition in superco...
Substantial field-dependent microwave absorption is found in superconducting materials of the YBa2Cu...
The magnetic field dependent dissipative processes in the mixed state of HTSC give rise to intense, ...
It is shown that measuring microwave absorption in high-Tc superconductors at constant and very low ...
We theoretically investigate intermodulation distortion in high- Tc superconductors. We study the ef...
A strong microwave absorption at low magnetic fields is observed for a variety of metallic cuprates ...
The field-dependent nonresonant absorption at microwave (9.1 GHz) and radio (19.5 MHz) frequencies h...
The field-dependent nonresonant absorption at microwave (9.1 GHz) and radio (19.5 MHz) frequencies h...
(Bi,Pb)-Sr-Ca-Cu-O is considered as a system of 2201, 2212 and 2223 superconductors embedded in the ...
We address the problem of nonequilibrium superconductivity in the presence of microwave irradiation....