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Influence of material parameters on the performance of niobium-based superconducting radiofrequency cavities

机译:材料参数对铌基超导射频腔性能的影响

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A detailed thermal analysis of a niobium (Nb)-based superconducting radio-frequency (SRF) cavity in a liquid helium bath is presented, by taking into account the temperature and magnetic field dependence of surface resistance and thermal conductivity in the superconducting state of the starting Nb material (for SRF cavity fabrication) with different impurity levels. The drop in SRF cavity quality factor ($mathcal{Q}_{0}$) in the high acceleration gradient regime (before the ultimate breakdown of the SRF cavity) is studied in detail. It is argued that the highfield $mathcal{Q}_{0}$-drop in SRF cavity is considerably influenced by the intrinsic material parameters such as electrical conductivity and thermal diffusivity. The detailed analysis reveals that the current specification on the purity of Nb material for SRF cavity fabrication is somewhat over-specified, as also inferred by the experimental work reported by some of the laboratories in the recent past. In line with these encouraging experimental results, in this paper, based on a rigorous calculation, we show that the Nb material with relatively low purity can very well serve the purpose for the accelerators dedicated for spallation neutron source (SNS) or accelerator-driven sub-critical system(ADSS) applications, where the required accelerating gradient is typically up to $m{20 MV m^{a??1}}$. This information will have important implication towards the cost reduction of superconducting technology-based particle accelerators for various applications. We think this theoretical work will be complementary to the experimental efforts performed in various laboratories at different corners of the globe.
机译:通过考虑到液氦浴中的液氦浴中的铌(Nb)的超导射频(SRF)腔的详细分析,通过在超导状态下的表面电阻和导热率的磁场依赖性依赖性利用不同的杂质水平起始Nb材料(用于SRF腔制备)。详细研究了高加速度梯度方案中的SRF腔质量因子($ mathcal {q} _ {0} $)的下降,详细研究了SRF腔室的最终击穿之前)。有人认为,SRF腔中的HIGHFIELD $ MATHCAL {Q} _ {0} $ - 诸如导电性和热扩散率的内在材料参数显着影响。详细分析表明,目前关于SRF腔制造的Nb材料的纯度的规范有些过于规定,也可以通过最近的一些实验室报告的实验工作推断出来。符合这些令人鼓舞的实验结果,本文基于严格的计算,我们表明,具有相对较低的纯度的Nb材料非常好,可以为专用于浇注中子源(SNS)或加速器驱动的子的加速器的目的 - 临界系统(广告)应用程序,其中所需的加速梯度通常最多可达$ rm {20 mv m ^ {a ?? 1}} $。这些信息将对各种应用的超导技术的粒子加速器的成本降低具有重要意义。我们认为,这种理论工作将与全球不同角落的各种实验室所表演的实验努力互补。

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