Langdon, Isabella and Robinson, Martin Paul orcid.org/0000-0003-1767-5541 (Accepted: 2025) Technique for Fast, Accurate Measurement of Complex Permittivity of EM Materials with Samples of Arbitrary Shape. In: 2025 International Symposium on Electromagnetic Compatibility – EMC Europe. (In Press)
Abstract
This paper presents a novel technique for the measurement of complex permittivity of dielectric materials using samples of arbitrary shape and size. Traditional methods for the use of measuring dielectrics have historically required either large, flat samples of a material, or the material to be in powder form. This is limiting when it comes to modern applications, or in the study of archeological objects. Our approach, based on Resonant Cavity Perturbation theory (RCP), allows for the measurement of small, irregularly shaped samples by combining perturbations from three orthogonal modes in a cuboid cavity. We validate this technique by measuring various materials such as polymers and woods, the results of which demonstrate the effectiveness of the technique in providing reliable dielectric readings at microwave frequencies. This method may be particularly useful in the non-destructive characterization of archeological objects, or in the characterization of new materials.
Metadata
Item Type: | Proceedings Paper |
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Authors/Creators: |
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Copyright, Publisher and Additional Information: | This is an author-produced version of the published paper. Uploaded in accordance with the University’s Research Publications and Open Access policy. |
Keywords: | complex permittivity,microwave frequencies,non-destructive testing,cavity perturbation,EMC |
Dates: |
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Institution: | The University of York |
Academic Units: | The University of York > Faculty of Sciences (York) > Electronic Engineering (York) |
Depositing User: | Pure (York) |
Date Deposited: | 17 Jun 2025 13:20 |
Last Modified: | 17 Jun 2025 13:20 |
Status: | In Press |
Sustainable Development Goals: | |
Open Archives Initiative ID (OAI ID): | oai:eprints.whiterose.ac.uk:227947 |
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