Permittivity and permeability of epoxy-magnetite powder composites at microwave frequencies

Radio, millimeter, and sub-millimeter astronomy experiments as well as remote sensing applications often require castable absorbers with well known electromagnetic properties to design and realize calibration targets. In this context, we fabricated and characterized two samples using different ratio...

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Main Authors: Ghigna, T, Zannoni, M, Jones, ME, Simonetto, A
Format: Journal article
Language:English
Published: AIP Publishing 2020
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author Ghigna, T
Zannoni, M
Jones, ME
Simonetto, A
author_facet Ghigna, T
Zannoni, M
Jones, ME
Simonetto, A
author_sort Ghigna, T
collection OXFORD
description Radio, millimeter, and sub-millimeter astronomy experiments as well as remote sensing applications often require castable absorbers with well known electromagnetic properties to design and realize calibration targets. In this context, we fabricated and characterized two samples using different ratios of two easily commercially available materials: epoxy (Stycast 2850FT) and magnetite (Fe3O4) powder. We performed transmission and reflection measurements from 7 GHz up to 170 GHz with a vector network analyzer equipped with a series of standard horn antennas. Using an empirical model, we analyzed the data to extract complex permittivity and permeability from transmission data; then, we used reflection data to validate the results. In this paper, we present the sample fabrication procedure, analysis method, parameter extraction pipeline, and results for two samples with different epoxy-powder mass ratios.
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spelling oxford-uuid:6273f7e0-ea93-4129-a314-091b7b2bf8112022-03-26T18:06:20ZPermittivity and permeability of epoxy-magnetite powder composites at microwave frequenciesJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:6273f7e0-ea93-4129-a314-091b7b2bf811EnglishSymplectic ElementsAIP Publishing2020Ghigna, TZannoni, MJones, MESimonetto, ARadio, millimeter, and sub-millimeter astronomy experiments as well as remote sensing applications often require castable absorbers with well known electromagnetic properties to design and realize calibration targets. In this context, we fabricated and characterized two samples using different ratios of two easily commercially available materials: epoxy (Stycast 2850FT) and magnetite (Fe3O4) powder. We performed transmission and reflection measurements from 7 GHz up to 170 GHz with a vector network analyzer equipped with a series of standard horn antennas. Using an empirical model, we analyzed the data to extract complex permittivity and permeability from transmission data; then, we used reflection data to validate the results. In this paper, we present the sample fabrication procedure, analysis method, parameter extraction pipeline, and results for two samples with different epoxy-powder mass ratios.
spellingShingle Ghigna, T
Zannoni, M
Jones, ME
Simonetto, A
Permittivity and permeability of epoxy-magnetite powder composites at microwave frequencies
title Permittivity and permeability of epoxy-magnetite powder composites at microwave frequencies
title_full Permittivity and permeability of epoxy-magnetite powder composites at microwave frequencies
title_fullStr Permittivity and permeability of epoxy-magnetite powder composites at microwave frequencies
title_full_unstemmed Permittivity and permeability of epoxy-magnetite powder composites at microwave frequencies
title_short Permittivity and permeability of epoxy-magnetite powder composites at microwave frequencies
title_sort permittivity and permeability of epoxy magnetite powder composites at microwave frequencies
work_keys_str_mv AT ghignat permittivityandpermeabilityofepoxymagnetitepowdercompositesatmicrowavefrequencies
AT zannonim permittivityandpermeabilityofepoxymagnetitepowdercompositesatmicrowavefrequencies
AT jonesme permittivityandpermeabilityofepoxymagnetitepowdercompositesatmicrowavefrequencies
AT simonettoa permittivityandpermeabilityofepoxymagnetitepowdercompositesatmicrowavefrequencies