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Megagauss magnetic field generation in single-turn coils: New frontiers for scientific experiments

机译:单匝线圈中的巨型磁场产生:科学实验的新领域

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We report on the design and performance of a megagauss generator at the Humboldt High Magnetic Field Centre. The installation uses the fast capacitor discharge into single-turn coils to produce microsecond pulses of 260 T in 8 mm diameter suitable for low-temperature experiments and 310 T in 5 mm diameter. Simple concepts are applied to substantiate crucial design principles for the generator and the choice of components. The implementation of a high-power/low-inductance circuit operated at 60 kV and other technical questions are discussed in detail. The analysis of experimental field and current data is based on numerical simulations of the magnetic pressure and the nonlinear flux diffusion. It was carried out in order to investigate the limitations and characteristics of the Berlin generator in particular and the single-turn coil technique in general. The paper focuses primarily on field, generator and coil parameters, which can be used for performing routine, reproducible scientific experiments at low temperatures.
机译:我们报告了洪堡高磁场中心的一台高斯发生器的设计和性能。该装置将电容器快速放电到单匝线圈中,以产生直径8毫米的260 T微秒脉冲,适用于低温实验,直径5毫米的310 T微秒脉冲。应用简单的概念来证实发电机和组件选择的关键设计原则。详细讨论了在60 kV下工作的大功率/低电感电路的实现以及其他技术问题。对实验场和电流数据的分析基于磁压力和非线性磁通扩散的数值模拟。这样做是为了研究柏林发电机的局限性和特性,以及一般的单匝线圈技术。本文主要关注磁场,发电机和线圈参数,这些参数可用于在低温下进行常规的,可重复的科学实验。

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