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Ultra-high quality factors in superconducting niobium cavities in ambient magnetic fields up to 190 mG

机译:高达190 mG的环境磁场中超导铌腔中的超高质量因子

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Ambient magnetic field, if trapped in the penetration depth, leads to the residual resistance and therefore sets the limit for the achievable quality factors in superconducting niobium resonators for particle accelerators. Here, we show that a complete expulsion of the magnetic flux can be performed and leads to: (1) record quality factors Q > 2 × 10 up to accelerating gradient of 22 MV/m; (2) Q ∼ 3 × 10 at 2 K and 16 MV/m in up to 190 mG magnetic fields. This is achieved by large thermal gradients at the normal/superconducting phase front during the cooldown. Our findings open up a way to ultra-high quality factors at low temperatures and show an alternative to the sophisticated magnetic shielding implemented in modern superconducting accelerators.
机译:如果环境磁场被困在穿透深度中,则会导致残余电阻,因此为粒子加速器的超导铌谐振腔中可达到的品质因数设置了极限。在这里,我们表明可以完全排出磁通量,并导致:(1)记录质量因子Q> 2×10直至加速梯度为22 MV / m; (2)在高达190 mG的磁场下,在2 K和16 MV / m的条件下Q〜3×10。这是通过冷却过程中正常/超导相前部的较大热梯度实现的。我们的发现为低温下获得超高质量因子开辟了道路,并显示了现代超导加速器中实现的复杂磁屏蔽的替代方案。

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