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相关论文: Onset of dendritic flux avalanches in superconduct…

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We develop a fast numerical procedure for analysis of nonlinear and nonlocal electrodynamics of type-II superconducting films in transverse magnetic fields taking into account realistic boundary conditions. Using this procedure we explore…

超导电性 · 物理学 2015-05-20 J. I. Vestgarden , D. V. Shantsev , Y. M. Galperin , T. H. Johansen

At low temperatures the critical state in superconducting films can be unstable with respect to thermomagnetic dendritic avalanches. By numerical simulations of disk-shaped superconductors, we consider how the dynamics and morphology of the…

超导电性 · 物理学 2013-09-26 J. I. Vestgarden , Y. M. Galperin , T. H. Johansen

We propose a mechanism responsible for the abrupt vanishing of the dendritic flux instability found in many superconducting films when an increasing magnetic field is applied. The onset of flux avalanches and the subsequent reentrance of…

Dendritic flux avalanches is a frequently encountered consequence of the thermomagnetic instability in type-II superconducting films. The avalanches, potentially harmful for superconductor-based devices, can be suppressed by an adjacent…

超导电性 · 物理学 2013-12-30 J. I. Vestgarden , Y. M. Galperin , T. H. Johansen

We have observed the occurrence of dendritic flux avalanches in an amorphous film of Mo$_{84}$Si$_{16}$. These events are understood to have a thermomagnetic origin and involve the abrupt penetration of bursts of magnetic flux taking place…

超导电性 · 物理学 2016-11-15 F. Colauto , M. Motta , A. Palau , M. G. Blamire , T. H. Johansen , W. A. Ortiz

Dendritic flux avalanches is a frequently encountered instability in the vortex matter of type II superconducting films at low temperatures. Previously, linear stability analysis has shown that such avalanches should be nucleated where the…

超导电性 · 物理学 2012-09-14 J. I. Vestgarden , Y. M. Galperin , T. H. Johansen

Magneto-optical imaging was used to study a zero-field-cooled MgB2 film at 9.6K where in a slowly increasing field the flux penetrates by abrupt formation of large dendritic structures. Simultaneously, a gradual flux penetration takes…

超导电性 · 物理学 2009-11-07 D. V. Shantsev , P. E. Goa , F. L. Barkov , T. H. Johansen , W. N. Kang , S. I. Lee

Magneto-optical imaging reveals that in superconducting films of MgB2 a transport current creates avalanche-like flux dynamics where highly branching dendritic penetration patterns are formed. The instability is triggered when the current…

超导电性 · 物理学 2009-11-07 A. V. Bobyl , D. V. Shantsev , T. H. Johansen , W. N. Kang , H. J. Kim , E. M. Choi , S. I. Lee

Stability of the vortex matter -- magnetic flux lines penetrating into the material -- in type-II superconductor films is crucially important for their application. If some vortices get detached from pinning centres, the energy dissipated…

超导电性 · 物理学 2018-07-03 J. I. Vestgården , T. H. Johansen , Y. M. Galperin

MgB2 tapes with high critical current have a significant technological potential, but can experience operational breakdown due to thermomagnetic instability. Using magneto-optical imaging the spatial structure of the thermomagnetic…

In this work, we provide a systematic study of the magnetic field penetration process and avalanche formation in niobium films of different thicknesses deposited on glass substrates. The research was carried out by means of direct…

超导电性 · 物理学 2023-03-22 I. Abaloszewa , M. Z. Cieplak , A. Abaloszew

The penetration of magnetic flux into a thin superconducting film of Nb3Sn with critical temperature 17.8K and critical current density 6MA/cm^2 was visualized using magneto-optical imaging. Below 8 K an avalanche-like flux penetration in…

超导电性 · 物理学 2016-08-31 I. A. Rudnev , S. V. Antonenko , D. V. Shantsev , T. H. Johansen

Flux distributions in thin superconducting NbN films placed in a perpendicular magnetic field have been studied using magneto-optical imaging. Below 5.5 K the flux penetrates in the form of abrupt avalanches resulting in dendritic…

超导电性 · 物理学 2007-05-23 I. A. Rudnev , D. V. Shantsev , T. H. Johansen , A. E. Primenko

The variety of morphologies in flux patterns created by thermomagnetic dendritic avalanches in type-II superconducting films is investigated using numerical simulations. The avalanches are triggered by introducing a hot spot at the edge of…

超导电性 · 物理学 2013-04-22 J. I. Vestgarden , D. V. Shantsev , Y. M. Galperin , T. H. Johansen

We suggest a new theoretical approach describing the velocity of magnetic flux dendrite penetration into thin superconducting films. The key assumptions for this approach are based upon experimental observations. We treat a dendrite tip…

超导电性 · 物理学 2009-11-10 B. Biehler , B. -U. Runge , P. Leiderer , R. G. Mints

Angle dependent torque measurements have been carried out on the organic superconductor, kappa-(ET)2Cu(NCS)2 at extremely low temperatures (25 - 300 mK). Magneto-thermal instabilities are observed in the form of abrupt magnetization (flux)…

超导电性 · 物理学 2009-09-29 M. M. Mola , R. Haddad , S. Hill

The stability of superconducting films with respect to oscillatory precursor modes for thermomag- netic avalanches is investigated theoretically. The results for the onset threshold show that previous treatments of non-oscillatory modes…

超导电性 · 物理学 2016-05-25 J. I. Vestgarden , Y. M. Galperin , T. H. Johansen

Magneto-optical imaging is used to visualize vortex avalanches in MgB2 films at 4K. Avalanches ranging from 50 to 50000 vortices were detected. The size distribution function has a clear peak whose position moves towards larger sizes as the…

超导电性 · 物理学 2007-05-23 D. V. Shantsev , A. V. Bobyl , Y. M. Galperin , T. H. Johansen , S. I. Lee

Local magnetization measurements on 100 nm type-II superconducting Pb thin films show that flux penetration changes qualitatively with temperature. Small flux jumps at the lowest temperatures gradually increase in size, then disappear near…

超导电性 · 物理学 2009-11-10 H. A. Radovan , R. J. Zieve

Using magneto-optical imaging the phenomenon of dendritic flux penetration in superconducting films was studied. Flux dendrites were abruptly formed in a 300 nm thick film of MgB2 by applying a perpendicular magnetic field. Detailed…

超导电性 · 物理学 2009-11-07 F. L. Barkov , D. V. Shantsev , T. H. Johansen , P. E. Goa , W. N. Kang , H. J. Kim , E. M. Choi , S. I. Lee
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