论文标题
使用3D总元件微波腔的3D打印超导型niobium的低温材料特性的表征
Characterisation of Cryogenic Material Properties of 3D-Printed Superconducting Niobium using a 3D Lumped Element Microwave Cavity
论文作者
论文摘要
我们提出了3D打印niobium的电性能的实验表征。该研究是通过将3D打印的NB柱插入铝制圆柱腔中进行的,形成了3D元件重新输入微波腔谐振器。将谐振器冷却至低于Niobium(9.25K)的临界温度,然后铝(1.2K),同时测量电磁共振的质量因子。然后将其与腔的有限元分析和具有相似维度和频率的铝柱的相同腔的测量,以提取Niobium Post的表面电阻。 3D打印的niobium在与常规niobium相似的温度下向超导状态表现出过渡,以及$ 3.1 \ times10^{ - 4} $ $ω$的表面电阻。该值可与以前研究的许多传统加工niobium的样本相媲美,没有专门的表面处理。此外,这项研究展示了一种简单的新方法,用于表征相对较小且几何简单的超导体样品的材料特性,该样品可以很容易地应用于其他材料,尤其是3D打印的材料。添加剂制造业的进一步研究和开发可能会看到3D打印的niobium不仅在超导型腔设计中,而且在未来的创新技术中应用。
We present an experimental characterisation of the electrical properties of 3D-printed Niobium. The study was performed by inserting a 3D-printed Nb post inside an Aluminium cylindrical cavity, forming a 3D lumped element re-entrant microwave cavity resonator. The resonator was cooled to temperatures below the critical temperature of Niobium (9.25K) and then Aluminium (1.2K), while measuring the quality factors of the electromagnetic resonances. This was then compared with finite element analysis of the cavity and a measurement of the same cavity with an Aluminium post of similar dimensions and frequency, to extract the surface resistance of the Niobium post. The 3D-printed Niobium exhibited a transition to the superconducting state at a similar temperature to the regular Niobium, as well as a surface resistance of $3.1\times10^{-4}$ $Ω$. This value was comparable to many samples of traditionally machined Niobium previously studied without specialised surface treatment. Furthermore, this study demonstrates a simple new method for characterizing the material properties of a relatively small and geometrically simple sample of superconductor, which could be easily applied to other materials, particularly 3D-printed materials. Further research and development in additive manufacturing may see the application of 3D-printed Niobium in not only superconducting cavity designs, but in the innovative technology of the future.