English

Atomically smooth films of CsSb: a chemically robust visible light photocathode

Accelerator Physics 2023-10-25 v1 Materials Science

Abstract

Alkali antimonide semiconductor photocathodes provide a promising platform for the generation of high brightness electron beams, which are necessary for the development of cutting-edge probes including x-ray free electron lasers and ultrafast electron diffraction. However, to harness the intrinsic brightness limits in these compounds, extrinsic degrading factors, including surface roughness and contamination, must be overcome. By exploring the growth of CsxSb thin films monitored by in situ electron diffraction, the conditions to reproducibly synthesize atomically smooth films of CsSb on 3C-SiC (100) and graphene coated TiO2 (110) substrates are identified, and detailed structural, morphological, and electronic characterization is presented. These films combine high quantum efficiency in the visible (up to 1.2% at 400 nm), an easily accessible photoemission threshold of 550 nm, low surface roughness (down to 600 pm on a 1 um scale), and a robustness against oxidation up to 15 times greater then Cs3Sb. These properties suggest that CsSb has the potential to operate as an alternative to Cs3_3Sb in electron source applications where the demands of the vacuum environment might otherwise preclude the use of traditional alkali antimonides.

Keywords

Cite

@article{arxiv.2305.19553,
  title  = {Atomically smooth films of CsSb: a chemically robust visible light photocathode},
  author = {C. T. Parzyck and C. A. Pennington and W. J. I. DeBenedetti and J. Balajka and E. Echeverria and H. Paik and L. Moreschini and B. D. Faeth and C. Hu and J. K. Nangoi and V. Anil and T. A. Arias and M. A. Hines and D. G. Schlom and A. Galdi and K. M. Shen and J. M. Maxson},
  journal= {arXiv preprint arXiv:2305.19553},
  year   = {2023}
}

Comments

11 pages, 6 figures, 1 table

R2 v1 2026-06-28T10:51:34.241Z