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Nanomechanical and electrical properties of Nb thin films deposited on Pb substrates by pulsed laser deposition as a new concept photocathode for superconductor cavities

机译:通过脉冲激光沉积在Pb衬底上沉积的Nb薄膜的纳米机械和电学性质,作为超导体腔体的新概念光电阴极

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摘要

We report a design of photocathode, which combines the good photoemissive properties of lead (Pb) and the advantages of superconducting performance of niobium (Nb) when installed into a superconducting radio-frequency gun. The new configuration is obtained by a coating of Nb thin film grown on a disk of Pb via pulsed laser deposition. The central emitting area of Pb is masked by a shield to avoid the Nb deposition. The nanomechanical properties of the Nb film, obtained through nanoindentation measurements, reveal a hardness of 2.8±0.3 GPa, while the study of the electrical resistivity of the film shows the appearance of the superconducting transitions at 9.3 K and 7.3 K for Nb and Pb, respectively, very close to the bulk material values. Additionally, morphological, structural and contamination studies of Nb thin film expose a very low droplet density on the substrate surface, a small polycrystalline orientation of the films and a low contamination level. These results, together with the acceptable Pb quantum efficiency of 2×10−5 found at 266 nm, demonstrate the potentiality of the new concept photocathode.
机译:我们报告了一种光电阴极的设计,该光电阴极结合了铅(Pb)的良好光电发射特性和安装到超导射频枪中铌(Nb)的超导性能的优点。通过脉冲激光沉积在Pb盘上生长的Nb薄膜涂层获得了新的配置。 Pb的中心发射区被屏蔽层遮蔽,以避免Nb沉积。通过纳米压痕测量获得的Nb薄膜的纳米力学性能显示出2.8±0.3 GPa的硬度,而对薄膜电阻率的研究表明,Nb和Pb在9.3K和7.3K处出现了超导转变,分别非常接近散装物料值。另外,对Nb薄膜的形态,结构和污染的研究表明,基底表面的液滴密度非常低,薄膜的多晶取向较小,污染水平较低。这些结果以及在266nm处发现的2×10-5可接受的Pb量子效率,证明了新概念光电阴极的潜力。

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