第二类超导体
- 网络type ii superconductor;Type II;type Ⅱ superconductor
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理想第二类超导体的临界场
Critical Fields of the Ideal Type II Superconductor
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非理想第二类超导体磁通蠕动的计算模拟研究
Simulations on local flux creep in type II superconductors
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第一,我们运用有限差分数值求解第二类超导体周期的TDGL模型,研究了当外加磁场变化时单涡旋的静态和动力学特性。
First , we present numerical solutions of the periodic TDGL model for the type-II superconductors by a finite-difference approximation . Both the static and dynamical properties of a single vortex are studied as the external magnetic field varies .
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非理想第二类超导体在高频场中的行为
The Behaviour of the Nonideal Type ⅱ Superconductor in a High Frequency Field
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最后,研究了理想第二类超导体的力-磁耦合特性。
Finally , the Magneto-Elastic coupling properties of the ideal type-II superconductors are studied theoretically .
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第二类超导体输运临界电流密度的一个临界态模型计算
A Critical State Model Calculation for the Transport Critical Current Density of Type ⅱ Superconductors
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第二类超导体中涡旋环的量子与热激发成核理论
The Theory of Vortex Rings Nucleation by Thermal Activation and Quantum - tunneling in Type - ⅱ Superconductors
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除此之外,还计算了理想第二类超导体在磁场中的表面变形。
In addition , we also analyze the surface deformation of the ideal type-II superconductors caused by the Abrikosov vortex lattice .
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该文研究了第二类超导体中由量子与热激发引起的涡旋环成核理论。
Abstract In this paper , we study the theory of vortex rings nucleation by thermal activation and quantum-tunneling in type - ⅱ superconductors .
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给出了第二类超导体临界电流密度随样品尺寸及外加磁场变化的一个临界态模型计算。
A critical state model calculation was proposed for the dependence of the transport critical current density on the applied magnetic field and the thickness of a slab shape type ⅱ superconducting sample .
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着重介绍了超导材料的研究情况以及超导材料的分类,详细讲述了非理想第二类超导体的特性和高温超导磁浮列车的发展现状。
And briefly introduces the research situation and the categories of the superconducting materials . Give an account of the characteristics of non-ideal type II superconductors in details and the current development status of the high-temperature superconducting Maglev train were depicted .
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第三,我们应用周期的TDGL模型模拟在含有正方形或者三角形钉扎阵列的第二类超导体上的涡旋动力学。
Third , we apply the periodic TDGL model to simulate vortex dynamics in a type-II superconductor with square or triangular pinning arrays .