期刊论文详细信息
Ray optics behavior of flux avalanche propagation in superconducting films
Article
关键词: MAGNETIC AC FIELD;    MGB2 THIN-FILMS;    INSTABILITY;    PENETRATION;    GROWTH;    STRIP;   
DOI  :  10.1103/PhysRevB.91.060507
来源: SCIE
【 摘 要 】

Experimental evidence of wave properties of dendritic flux avalanches in superconducting films is reported. Using magneto-optical imaging the propagation of dendrites across boundaries between a bare NbN film and areas coated by a Cu layer was visualized, and it was found that the propagation is refracted in full quantitative agreement with Snell's law. For the studied film of 170 nm thickness and a 0.9 mu m thick metal layer, the refractive index was close to n = 1.4. The origin of the refraction is believed to be caused by the dendrites propagating as an electromagnetic shock wave, similar to damped modes considered previously for normal metals. The analogy is justified by the large dissipation during the avalanches raising the local temperature significantly. Additional time-resolved measurements of voltage pulses generated by segments of the dendrites traversing an electrode confirm the consistency of the adopted physical picture.

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