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2 x 250-GeV CLIC gamma gamma collider based on it's drive beam FEL

CLIC is a linear $e^+e^-$ ($\gamma\gamma$) collider project which uses a drive beam to accelerate the main beam. The drive beam provides RF power for each corresponding unit of the main linac through energy extracting RF structures. CLIC has a wide range of center-of-mass energy options from 150 GeV...

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Autor principal: Aksakal, Husnu
Lenguaje:eng
Publicado: 2007
Materias:
Acceso en línea:http://cds.cern.ch/record/1030907
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author Aksakal, Husnu
author_facet Aksakal, Husnu
author_sort Aksakal, Husnu
collection CERN
description CLIC is a linear $e^+e^-$ ($\gamma\gamma$) collider project which uses a drive beam to accelerate the main beam. The drive beam provides RF power for each corresponding unit of the main linac through energy extracting RF structures. CLIC has a wide range of center-of-mass energy options from 150 GeV to 3 TeV. The present paper contains optimization of Free Electron Laser (FEL) using one bunch of CLIC drive beam in order to provide polarized light amplification using appropriate wiggler and luminosity spectrum of $\gamma\gamma$ collider for $E_{cm}$=0.5 TeV. Then amplified laser can be converted to a polarized high-energy $\gamma$ beam at the Conversion point (CP-prior to electron positron interaction point) in the process of Compton backscattering. At the CP a powerful laser pulse (FEL) focused to main linac electrons (positrons). Here this scheme described and it is show that CLIC drive beam parameters satisfy the requirement of FEL additionally essential undulator parameters has been defined. Achievable $\gamma\gamma$ luminosity is above $10^{34}$.
id cern-1030907
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2007
record_format invenio
spelling cern-10309072019-09-30T06:29:59Zhttp://cds.cern.ch/record/1030907engAksakal, Husnu2 x 250-GeV CLIC gamma gamma collider based on it's drive beam FELAccelerators and Storage RingsCLIC is a linear $e^+e^-$ ($\gamma\gamma$) collider project which uses a drive beam to accelerate the main beam. The drive beam provides RF power for each corresponding unit of the main linac through energy extracting RF structures. CLIC has a wide range of center-of-mass energy options from 150 GeV to 3 TeV. The present paper contains optimization of Free Electron Laser (FEL) using one bunch of CLIC drive beam in order to provide polarized light amplification using appropriate wiggler and luminosity spectrum of $\gamma\gamma$ collider for $E_{cm}$=0.5 TeV. Then amplified laser can be converted to a polarized high-energy $\gamma$ beam at the Conversion point (CP-prior to electron positron interaction point) in the process of Compton backscattering. At the CP a powerful laser pulse (FEL) focused to main linac electrons (positrons). Here this scheme described and it is show that CLIC drive beam parameters satisfy the requirement of FEL additionally essential undulator parameters has been defined. Achievable $\gamma\gamma$ luminosity is above $10^{34}$.arXiv:0704.2583oai:cds.cern.ch:10309072007-04-20
spellingShingle Accelerators and Storage Rings
Aksakal, Husnu
2 x 250-GeV CLIC gamma gamma collider based on it's drive beam FEL
title 2 x 250-GeV CLIC gamma gamma collider based on it's drive beam FEL
title_full 2 x 250-GeV CLIC gamma gamma collider based on it's drive beam FEL
title_fullStr 2 x 250-GeV CLIC gamma gamma collider based on it's drive beam FEL
title_full_unstemmed 2 x 250-GeV CLIC gamma gamma collider based on it's drive beam FEL
title_short 2 x 250-GeV CLIC gamma gamma collider based on it's drive beam FEL
title_sort 2 x 250-gev clic gamma gamma collider based on it's drive beam fel
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1030907
work_keys_str_mv AT aksakalhusnu 2x250gevclicgammagammacolliderbasedonitsdrivebeamfel