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Preliminary Results of the CASCADE Hidden Sector Photon Search

Light shining through a wall experiments can be used to make measurements of photon-WISP couplings. The first stage of the CASCADE experiment at the Cockcroft Institute of Accelerator Science and Technology is intended to be a proof-of-principle experiment utilising standard microwave technologies t...

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Autores principales: Woollett, Nathan, Bailey, Ian, Burt, Graeme, Chattopadhyay, Swapan, Dainton, John, Dexter, Amos, Goudket, Phillipe, Jenkins, Michael, Kalliokoski, Matti, Moss, Andrew, Pattalwar, Shrikant, Thakker, Trina, Williams, Peter
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.3204/DESY-PROC-2015-02/woollet_nathan
http://cds.cern.ch/record/2055434
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author Woollett, Nathan
Bailey, Ian
Burt, Graeme
Chattopadhyay, Swapan
Dainton, John
Dexter, Amos
Goudket, Phillipe
Jenkins, Michael
Kalliokoski, Matti
Moss, Andrew
Pattalwar, Shrikant
Thakker, Trina
Williams, Peter
author_facet Woollett, Nathan
Bailey, Ian
Burt, Graeme
Chattopadhyay, Swapan
Dainton, John
Dexter, Amos
Goudket, Phillipe
Jenkins, Michael
Kalliokoski, Matti
Moss, Andrew
Pattalwar, Shrikant
Thakker, Trina
Williams, Peter
author_sort Woollett, Nathan
collection CERN
description Light shining through a wall experiments can be used to make measurements of photon-WISP couplings. The first stage of the CASCADE experiment at the Cockcroft Institute of Accelerator Science and Technology is intended to be a proof-of-principle experiment utilising standard microwave technologies to make a modular, cryogenic HSP detector to take advantage of future high-power superconducting cavity tests. In these proceedings we will be presenting the preliminary results of the CASCADE LSW experiment showing a peak expected exclusion of $1.10 \times 10^{-8}$ in the mass range from 1.96$\mu$eV to 5.38$\mu$eV, exceeding current limits.
id cern-2055434
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling cern-20554342023-03-14T18:35:04Zdoi:10.3204/DESY-PROC-2015-02/woollet_nathanhttp://cds.cern.ch/record/2055434engWoollett, NathanBailey, IanBurt, GraemeChattopadhyay, SwapanDainton, JohnDexter, AmosGoudket, PhillipeJenkins, MichaelKalliokoski, MattiMoss, AndrewPattalwar, ShrikantThakker, TrinaWilliams, PeterPreliminary Results of the CASCADE Hidden Sector Photon SearchDetectors and Experimental TechniquesLight shining through a wall experiments can be used to make measurements of photon-WISP couplings. The first stage of the CASCADE experiment at the Cockcroft Institute of Accelerator Science and Technology is intended to be a proof-of-principle experiment utilising standard microwave technologies to make a modular, cryogenic HSP detector to take advantage of future high-power superconducting cavity tests. In these proceedings we will be presenting the preliminary results of the CASCADE LSW experiment showing a peak expected exclusion of $1.10 \times 10^{-8}$ in the mass range from 1.96$\mu$eV to 5.38$\mu$eV, exceeding current limits.Light shining through a wall experiments can be used to make measurements of photon-WISP couplings. The first stage of the CASCADE experiment at the Cockcroft Institute of Accelerator Science and Technology is intended to be a proof-of-principle experiment utilising standard microwave technologies to make a modular, cryogenic HSP detector to take advantage of future high-power superconducting cavity tests. In these proceedings we will be presenting the preliminary results of the CASCADE LSW experiment showing a peak expected exclusion of $1.10\times10^{-8}$ in the mass range from 1.96\,$\mu$eV to 5.38\,$\mu$eV, exceeding current limits.Light shining through a wall experiments can be used to make measurements of photon-WISP couplings. The first stage of the CASCADE experiment at the Cockcroft Institute of Accelerator Science and Technology is intended to be a proof-of-principle experiment utilising standard microwave technologies to make a modular, cryogenic HSP detector to take advantage of future high-power superconducting cavity tests. In these proceedings we will be presenting the preliminary results of the CASCADE LSW experiment showing a peak expected exclusion of $1.10 \times 10^{-8}$ in the mass range from 1.96$\mu$eV to 5.38$\mu$eV, exceeding current limits.arXiv:1509.07693oai:cds.cern.ch:20554342015-09-25
spellingShingle Detectors and Experimental Techniques
Woollett, Nathan
Bailey, Ian
Burt, Graeme
Chattopadhyay, Swapan
Dainton, John
Dexter, Amos
Goudket, Phillipe
Jenkins, Michael
Kalliokoski, Matti
Moss, Andrew
Pattalwar, Shrikant
Thakker, Trina
Williams, Peter
Preliminary Results of the CASCADE Hidden Sector Photon Search
title Preliminary Results of the CASCADE Hidden Sector Photon Search
title_full Preliminary Results of the CASCADE Hidden Sector Photon Search
title_fullStr Preliminary Results of the CASCADE Hidden Sector Photon Search
title_full_unstemmed Preliminary Results of the CASCADE Hidden Sector Photon Search
title_short Preliminary Results of the CASCADE Hidden Sector Photon Search
title_sort preliminary results of the cascade hidden sector photon search
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.3204/DESY-PROC-2015-02/woollet_nathan
http://cds.cern.ch/record/2055434
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