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A microwave paraphoton and axion detection experiment with 300 dB electromagnetic shielding at 3 GHz

For the microwave equivalent of “light shining through the wall” (LSW) experiments, a sensitive microwave detector and very high electromagnetic shielding is required. The screening attenuation between the axion generating cavity and the nearby detection cavity should be greater than 300 dB, in orde...

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Detalles Bibliográficos
Autores principales: Betz, M., Caspers, F.
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:http://cds.cern.ch/record/1459108
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author Betz, M.
Caspers, F.
author_facet Betz, M.
Caspers, F.
author_sort Betz, M.
collection CERN
description For the microwave equivalent of “light shining through the wall” (LSW) experiments, a sensitive microwave detector and very high electromagnetic shielding is required. The screening attenuation between the axion generating cavity and the nearby detection cavity should be greater than 300 dB, in order to improve over presently existing exclusion limits. To achieve these goals in practice, a “box in a box” concept was utilized for shielding the detection cavity, while a vector signal analyzer was used as a microwave receiver with a very narrow resolution bandwidth in the order of a few micro-Hz. This contribution will present the experimental layout and the results to date.
id cern-1459108
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
record_format invenio
spelling cern-14591082023-06-29T03:38:21Zhttp://cds.cern.ch/record/1459108engBetz, M.Caspers, F.A microwave paraphoton and axion detection experiment with 300 dB electromagnetic shielding at 3 GHzAccelerators and Storage RingsDetectors and Experimental TechniquesFor the microwave equivalent of “light shining through the wall” (LSW) experiments, a sensitive microwave detector and very high electromagnetic shielding is required. The screening attenuation between the axion generating cavity and the nearby detection cavity should be greater than 300 dB, in order to improve over presently existing exclusion limits. To achieve these goals in practice, a “box in a box” concept was utilized for shielding the detection cavity, while a vector signal analyzer was used as a microwave receiver with a very narrow resolution bandwidth in the order of a few micro-Hz. This contribution will present the experimental layout and the results to date.For the microwave equivalent of 'light shining through the wall' (LSW) experiments, a sensitive microwave detector and very high electromagnetic shielding is required. The screening attenuation between the axion generating cavity and the nearby detection cavity should be greater than 300 dB, in order to improve over presently existing exclusion limits. To achieve these goals in practice, a 'box in a box' concept was utilized for shielding the detection cavity, while a vector signal analyzer was used as a microwave receiver with a very narrow resolution bandwidth in the order of a few micro-Hz. This contribution will present the experimental layout and the results to date.arXiv:1207.3275IPAC-2012-THPPC021oai:cds.cern.ch:14591082012-05-20
spellingShingle Accelerators and Storage Rings
Detectors and Experimental Techniques
Betz, M.
Caspers, F.
A microwave paraphoton and axion detection experiment with 300 dB electromagnetic shielding at 3 GHz
title A microwave paraphoton and axion detection experiment with 300 dB electromagnetic shielding at 3 GHz
title_full A microwave paraphoton and axion detection experiment with 300 dB electromagnetic shielding at 3 GHz
title_fullStr A microwave paraphoton and axion detection experiment with 300 dB electromagnetic shielding at 3 GHz
title_full_unstemmed A microwave paraphoton and axion detection experiment with 300 dB electromagnetic shielding at 3 GHz
title_short A microwave paraphoton and axion detection experiment with 300 dB electromagnetic shielding at 3 GHz
title_sort microwave paraphoton and axion detection experiment with 300 db electromagnetic shielding at 3 ghz
topic Accelerators and Storage Rings
Detectors and Experimental Techniques
url http://cds.cern.ch/record/1459108
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