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Characterization of the Materials, Phases and Morphology Typical of High-Performance Scandate Cathodes

Producción científica: Conference contributionrevisión exhaustiva

2 Citas (Scopus)

Resumen

Scandate cathodes offer the promise, and in some cases, they exhibit demonstrated capabilities, of next-generation electron emitters suitable for high-performance electron guns. However, there remains a knowledge gap related to the materials and microstructure that might be targeted in order to consistently produce scandate cathodes that reliably deliver excellent emission properties. This paper will provide an overview of a multi-year project focused on characterization of the materials, phases and microstructures observed for scandate cathodes that had performed well during close-spaced diode testing. Typical features include highly faceted tungsten grains, the presence of nanoscale barium-containing particles that decorate the surfaces of tungsten grains, and the presence of scandium at the cathode's emitting surface. Additional insights into scandate cathode materials were obtained via large-area mapping of the distribution of elements and phases through the thickness of impregnated and life-tested cathode pellets.

Idioma originalEnglish
Título de la publicación alojada2022 23rd International Vacuum Electronics Conference, IVEC 2022
Páginas61-62
Número de páginas2
ISBN (versión digital)9781665443258
DOI
EstadoPublished - 2022
Evento23rd International Vacuum Electronics Conference, IVEC 2022 - Monterey, United States
Duración: abr 25 2022abr 29 2022

Serie de la publicación

Nombre2022 23rd International Vacuum Electronics Conference, IVEC 2022

Conference

Conference23rd International Vacuum Electronics Conference, IVEC 2022
País/TerritorioUnited States
CiudadMonterey
Período4/25/224/29/22

Nota bibliográfica

Publisher Copyright:
© 2022 IEEE.

Financiación

This work was financially supported by the Defense Advanced Research Projects Agency (DARPA) Innovative Vacuum Electronics Science and Technology (INVEST) program, under grant number N66001-16-1-4041. The views, opinions, and/or findings expressed are those of the author(s) and should not be interpreted as representing the official views or policies of the Department of Defense or the U.S. Government.

FinanciadoresNúmero del financiador
Innovative Vacuum Electronics Science and Technology ProgramN66001-16-1-4041
Defense Advanced Research Projects Agency

    ASJC Scopus subject areas

    • Atomic and Molecular Physics, and Optics
    • Electrical and Electronic Engineering
    • Instrumentation

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