2007
DOI: 10.1103/physrevb.75.012504
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Size effects on the quenching to the normal state ofYBa2Cu3O7δthin-film superconduc

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Cited by 24 publications
(27 citation statements)
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“…17, it is shown that in YBa 2 Cu 3 O 7Àd thin film microbridge structure, similar to the HTS coplanar waveguide one studied in the present paper, a switching effect (quenching) is observed in the dissipative state when structure is exposed to millisecond-long high DC pulses. The current-voltage curves of the microbridges with widths smaller than the thermal diffusion length have been measured.…”
supporting
confidence: 61%
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“…17, it is shown that in YBa 2 Cu 3 O 7Àd thin film microbridge structure, similar to the HTS coplanar waveguide one studied in the present paper, a switching effect (quenching) is observed in the dissipative state when structure is exposed to millisecond-long high DC pulses. The current-voltage curves of the microbridges with widths smaller than the thermal diffusion length have been measured.…”
supporting
confidence: 61%
“…The authors of the Ref. 17 concluded that for high current densities varying in the millisecond range, the intrinsic quenching mechanism is self-heating caused by conventional flux-flow effects. However, the authors emphasized that this conclusion does not exclude the relevance of other quenching mechanisms for another current densities and characteristic times.…”
mentioning
confidence: 99%
“…In addition, the widths of our microbridges are well above the threshold at which J * is sample-width dependent (Ruibal et al, 2007). The strong increase of E for current densities around J * make this type of samples very useful for FCL.…”
Section: Superconducting Fault Current Microlimitersmentioning
confidence: 83%
“…The measurements were made in a cryostat with the sample submerged in a forced flow of helium gas. The temperature of the copper holder of the microlimiter was measured with a platinum thermometer and regulated with an electronic system which ensures a temperature stabilization better than 0.05 K. Two examples of the I − V curves obtained in this R L − R b circuit (with R L = 4.9 Ω, this value taking already into account the resistance of the circuit electrical wires, of the order of 1.9 Ω) by using the electronic system described elsewhere (Ruibal et al, 2007;Viña et al, 2003) are shown in figure 25. In these curves the voltage was imposed and acquired during pulses of 1 s, a time much longer than the one needed by the microlimiter to reach the stationary state.…”
Section: Superconducting Fault Current Microlimitersmentioning
confidence: 99%
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