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在高梯度超导射频枪中运行的双碱光电阴极的长寿命。

Long lifetime of bialkali photocathodes operating in high gradient superconducting radio frequency gun.

作者信息

Wang E, Litvinenko V N, Pinayev I, Gaowei M, Skaritka J, Belomestnykh S, Ben-Zvi I, Brutus J C, Jing Y, Biswas J, Ma J, Narayan G, Petrushina I, Rahman O, Xin T, Rao T, Severino F, Shih K, Smith K, Wang G, Wu Y

机构信息

Collider-Accelerator Department, Brookhaven National Laboratory, Upton, NY, 11973, USA.

Department of Physics and Astronomy, Stony Brook University, Stony Brook, NY, 11794, USA.

出版信息

Sci Rep. 2021 Feb 24;11(1):4477. doi: 10.1038/s41598-021-83997-1.

Abstract

High brightness, high charge electron beams are critical for a number of advanced accelerator applications. The initial emittance of the electron beam, which is determined by the mean transverse energy (MTE) and laser spot size, is one of the most important parameters determining the beam quality. The bialkali photocathodes illuminated by a visible laser have the advantages of high quantum efficiency (QE) and low MTE. Furthermore, Superconducting Radio Frequency (SRF) guns can operate in the continuous wave (CW) mode at high accelerating gradients, e.g. with significant reduction of the laser spot size at the photocathode. Combining the bialkali photocathode with the SRF gun enables generation of high charge, high brightness, and possibly high average current electron beams. However, integrating the high QE semiconductor photocathode into the SRF guns has been challenging. In this article, we report on the development of bialkali photocathodes for successful operation in the SRF gun with months-long lifetime while delivering CW beams with nano-coulomb charge per bunch. This achievement opens a new era for high charge, high brightness CW electron beams.

摘要

高亮度、高电荷电子束对于许多先进的加速器应用至关重要。电子束的初始发射度由平均横向能量(MTE)和激光光斑尺寸决定,是决定束流质量的最重要参数之一。由可见光激光照射的双碱光电阴极具有高量子效率(QE)和低MTE的优点。此外,超导射频(SRF)枪可以在高加速梯度下以连续波(CW)模式运行,例如在光电阴极处显著减小激光光斑尺寸。将双碱光电阴极与SRF枪相结合能够产生高电荷、高亮度且可能具有高平均电流的电子束。然而,将高QE半导体光电阴极集成到SRF枪中一直具有挑战性。在本文中,我们报告了双碱光电阴极的开发情况,该阴极在SRF枪中成功运行,寿命长达数月,同时每束提供具有纳库仑电荷的连续波束流。这一成果开启了高电荷、高亮度连续波电子束的新时代。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e967/7904862/25b12c5af67d/41598_2021_83997_Fig1_HTML.jpg

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