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Development and Characterization of Multi-Alkali Antimonide Photocathodes for High-Brightness RF Photoinjectors

Due to their excellent photoemissive properties, especially low thermal emittance and high sensitivity in the green wavelength, multi-alkali antimonide photocathodes, in particular, cesium–potassium–antimonide, emerged as prominent photoemissive materials for the electron sources of high-repetition-...

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Autores principales: Mohanty, Sandeep Kumar, Krasilnikov, Mikhail, Oppelt, Anne, Stephan, Frank, Sertore, Daniele, Monaco, Laura, Pagani, Carlo, Hillert, Wolfgang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10304666/
https://www.ncbi.nlm.nih.gov/pubmed/37374768
http://dx.doi.org/10.3390/mi14061182
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author Mohanty, Sandeep Kumar
Krasilnikov, Mikhail
Oppelt, Anne
Stephan, Frank
Sertore, Daniele
Monaco, Laura
Pagani, Carlo
Hillert, Wolfgang
author_facet Mohanty, Sandeep Kumar
Krasilnikov, Mikhail
Oppelt, Anne
Stephan, Frank
Sertore, Daniele
Monaco, Laura
Pagani, Carlo
Hillert, Wolfgang
author_sort Mohanty, Sandeep Kumar
collection PubMed
description Due to their excellent photoemissive properties, especially low thermal emittance and high sensitivity in the green wavelength, multi-alkali antimonide photocathodes, in particular, cesium–potassium–antimonide, emerged as prominent photoemissive materials for the electron sources of high-repetition-rate FEL applications. To explore its feasibility of operating in a high-gradient RF gun, DESY collaborated with INFN LASA to develop multi-alkali photocathode materials. In this report, we describe the recipe of K-Cs-Sb photocathodes, which were grown on a Mo substrate by varying the foundational Sb layer thickness using sequential deposition techniques. This report also illustrates the information regarding the film thickness, substrate temperature, deposition rate, and its possible effects on the photocathode’s properties. In addition, the influence of temperature on the cathode degradation is also summarized. Furthermore, in the framework of density functional theory (DFT), we investigated the electronic and optical properties of the K(2)CsSb material. The optical properties, such as dielectric function, reflectivity, refracting index, and extinction coefficient, were evaluated. The correlation between the calculated and measured optical properties, such as reflectivity, provides a better and more efficient strategy to rationalize and understand the photoemissive material’s properties.
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spelling pubmed-103046662023-06-29 Development and Characterization of Multi-Alkali Antimonide Photocathodes for High-Brightness RF Photoinjectors Mohanty, Sandeep Kumar Krasilnikov, Mikhail Oppelt, Anne Stephan, Frank Sertore, Daniele Monaco, Laura Pagani, Carlo Hillert, Wolfgang Micromachines (Basel) Article Due to their excellent photoemissive properties, especially low thermal emittance and high sensitivity in the green wavelength, multi-alkali antimonide photocathodes, in particular, cesium–potassium–antimonide, emerged as prominent photoemissive materials for the electron sources of high-repetition-rate FEL applications. To explore its feasibility of operating in a high-gradient RF gun, DESY collaborated with INFN LASA to develop multi-alkali photocathode materials. In this report, we describe the recipe of K-Cs-Sb photocathodes, which were grown on a Mo substrate by varying the foundational Sb layer thickness using sequential deposition techniques. This report also illustrates the information regarding the film thickness, substrate temperature, deposition rate, and its possible effects on the photocathode’s properties. In addition, the influence of temperature on the cathode degradation is also summarized. Furthermore, in the framework of density functional theory (DFT), we investigated the electronic and optical properties of the K(2)CsSb material. The optical properties, such as dielectric function, reflectivity, refracting index, and extinction coefficient, were evaluated. The correlation between the calculated and measured optical properties, such as reflectivity, provides a better and more efficient strategy to rationalize and understand the photoemissive material’s properties. MDPI 2023-05-31 /pmc/articles/PMC10304666/ /pubmed/37374768 http://dx.doi.org/10.3390/mi14061182 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mohanty, Sandeep Kumar
Krasilnikov, Mikhail
Oppelt, Anne
Stephan, Frank
Sertore, Daniele
Monaco, Laura
Pagani, Carlo
Hillert, Wolfgang
Development and Characterization of Multi-Alkali Antimonide Photocathodes for High-Brightness RF Photoinjectors
title Development and Characterization of Multi-Alkali Antimonide Photocathodes for High-Brightness RF Photoinjectors
title_full Development and Characterization of Multi-Alkali Antimonide Photocathodes for High-Brightness RF Photoinjectors
title_fullStr Development and Characterization of Multi-Alkali Antimonide Photocathodes for High-Brightness RF Photoinjectors
title_full_unstemmed Development and Characterization of Multi-Alkali Antimonide Photocathodes for High-Brightness RF Photoinjectors
title_short Development and Characterization of Multi-Alkali Antimonide Photocathodes for High-Brightness RF Photoinjectors
title_sort development and characterization of multi-alkali antimonide photocathodes for high-brightness rf photoinjectors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10304666/
https://www.ncbi.nlm.nih.gov/pubmed/37374768
http://dx.doi.org/10.3390/mi14061182
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