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Aerogel for Multipactor Mitigation in RF Passive Components of Satellite Payloads

We investigate the use of aerogel to fill passive resonant components, encountered in the high-power stage of satellite payloads as a multipactor mitigation strategy. The study focuses on the L-band coaxial resonators filled with aerogel powder. Simulated and experimental results are used for the lo...

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Published in:IEEE transactions on microwave theory and techniques 2024-11, Vol.72 (11), p.6275-6285
Main Authors: Vague, Jose Joaquin, Goussetis, George, Boria, Vicente E., Kunes, Mark, Simoes, Fernando, Bouzekri, Oilid, Reglero, Marta, Mata, Rafael, Raboso, David
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container_issue 11
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container_title IEEE transactions on microwave theory and techniques
container_volume 72
creator Vague, Jose Joaquin
Goussetis, George
Boria, Vicente E.
Kunes, Mark
Simoes, Fernando
Bouzekri, Oilid
Reglero, Marta
Mata, Rafael
Raboso, David
description We investigate the use of aerogel to fill passive resonant components, encountered in the high-power stage of satellite payloads as a multipactor mitigation strategy. The study focuses on the L-band coaxial resonators filled with aerogel powder. Simulated and experimental results are used for the low-power characterization of the dielectric properties of different aerogel compositions and granular distributions. Experimental investigations on the venting and outgassing features that provide guidance for the preparation and handling of the aerogel-filled components are reported. Simulation and experimental results involving high-power test campaigns indicate strong potential for improving the multipactor threshold using the proposed approach.
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source IEEE Electronic Library (IEL) Journals
subjects Aerogel
Aerogels
cavities
Dielectric properties
dielectrics
Electrons
European Space Agency
Geometry
L-band
multifactor effect
Outgassing
Passive components
Payloads
Permittivity
Powders
Radio frequency
resonators
RF breakdown
title Aerogel for Multipactor Mitigation in RF Passive Components of Satellite Payloads
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