Cargando…

Positron Sources for Future High Energy Physics Colliders

An unprecedented positron average current is required to fit the luminosity demands of future $e^+e^-$ high energy physics colliders. In addition, in order to access precision-frontier physics, these machines require positron polarization to enable exploring the polarization dependence in many HEP p...

Descripción completa

Detalles Bibliográficos
Autores principales: Musumeci, P., Boffo, C., Bulanov, S.S., Chaikovska, I., Faus Golfe, A., Gessner, S., Grames, J., Hessami, R., Ivanyushenkov, Y., Lankford, A., Loisch, G., Moortgat-Pick, G., Nagaitsev, S., Riemann, S., Sievers, P., Tenholt, C., Yokoya, K.
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:http://cds.cern.ch/record/2808057
_version_ 1780973088831176704
author Musumeci, P.
Boffo, C.
Bulanov, S.S.
Chaikovska, I.
Faus Golfe, A.
Gessner, S.
Grames, J.
Hessami, R.
Ivanyushenkov, Y.
Lankford, A.
Loisch, G.
Moortgat-Pick, G.
Nagaitsev, S.
Riemann, S.
Sievers, P.
Tenholt, C.
Yokoya, K.
author_facet Musumeci, P.
Boffo, C.
Bulanov, S.S.
Chaikovska, I.
Faus Golfe, A.
Gessner, S.
Grames, J.
Hessami, R.
Ivanyushenkov, Y.
Lankford, A.
Loisch, G.
Moortgat-Pick, G.
Nagaitsev, S.
Riemann, S.
Sievers, P.
Tenholt, C.
Yokoya, K.
author_sort Musumeci, P.
collection CERN
description An unprecedented positron average current is required to fit the luminosity demands of future $e^+e^-$ high energy physics colliders. In addition, in order to access precision-frontier physics, these machines require positron polarization to enable exploring the polarization dependence in many HEP processes cross sections, reducing backgrounds and extending the reach of chiral physics studies beyond the standard model. The ILC has a mature plan for the polarized positron source based on conversion in a thin target of circularly polarized gammas generated by passing the main high energy e-beam in a long superconducting helical undulator. Compact colliders (CLIC, C3 and advanced accelerator-based concepts) adopt a simplified approach and currently do not plan to use polarized positrons in their baseline design, but could greatly benefit from the development of compact alternative solutions to polarized positron production. Increasing the positron current, the polarization purity and simplifying the engineering design are all opportunities where advances in accelerator technology have the potential to make a significant impact. This white-paper describes the current status of the field and provides R&D short-term and long-term pathways for polarized positron sources.
id cern-2808057
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28080572023-03-12T05:37:08Zhttp://cds.cern.ch/record/2808057engMusumeci, P.Boffo, C.Bulanov, S.S.Chaikovska, I.Faus Golfe, A.Gessner, S.Grames, J.Hessami, R.Ivanyushenkov, Y.Lankford, A.Loisch, G.Moortgat-Pick, G.Nagaitsev, S.Riemann, S.Sievers, P.Tenholt, C.Yokoya, K.Positron Sources for Future High Energy Physics Collidersphysics.acc-phAccelerators and Storage RingsAn unprecedented positron average current is required to fit the luminosity demands of future $e^+e^-$ high energy physics colliders. In addition, in order to access precision-frontier physics, these machines require positron polarization to enable exploring the polarization dependence in many HEP processes cross sections, reducing backgrounds and extending the reach of chiral physics studies beyond the standard model. The ILC has a mature plan for the polarized positron source based on conversion in a thin target of circularly polarized gammas generated by passing the main high energy e-beam in a long superconducting helical undulator. Compact colliders (CLIC, C3 and advanced accelerator-based concepts) adopt a simplified approach and currently do not plan to use polarized positrons in their baseline design, but could greatly benefit from the development of compact alternative solutions to polarized positron production. Increasing the positron current, the polarization purity and simplifying the engineering design are all opportunities where advances in accelerator technology have the potential to make a significant impact. This white-paper describes the current status of the field and provides R&D short-term and long-term pathways for polarized positron sources.arXiv:2204.13245FERMILAB-CONF-22-372-AD-TDoai:cds.cern.ch:28080572022-04-27
spellingShingle physics.acc-ph
Accelerators and Storage Rings
Musumeci, P.
Boffo, C.
Bulanov, S.S.
Chaikovska, I.
Faus Golfe, A.
Gessner, S.
Grames, J.
Hessami, R.
Ivanyushenkov, Y.
Lankford, A.
Loisch, G.
Moortgat-Pick, G.
Nagaitsev, S.
Riemann, S.
Sievers, P.
Tenholt, C.
Yokoya, K.
Positron Sources for Future High Energy Physics Colliders
title Positron Sources for Future High Energy Physics Colliders
title_full Positron Sources for Future High Energy Physics Colliders
title_fullStr Positron Sources for Future High Energy Physics Colliders
title_full_unstemmed Positron Sources for Future High Energy Physics Colliders
title_short Positron Sources for Future High Energy Physics Colliders
title_sort positron sources for future high energy physics colliders
topic physics.acc-ph
Accelerators and Storage Rings
url http://cds.cern.ch/record/2808057
work_keys_str_mv AT musumecip positronsourcesforfuturehighenergyphysicscolliders
AT boffoc positronsourcesforfuturehighenergyphysicscolliders
AT bulanovss positronsourcesforfuturehighenergyphysicscolliders
AT chaikovskai positronsourcesforfuturehighenergyphysicscolliders
AT fausgolfea positronsourcesforfuturehighenergyphysicscolliders
AT gessners positronsourcesforfuturehighenergyphysicscolliders
AT gramesj positronsourcesforfuturehighenergyphysicscolliders
AT hessamir positronsourcesforfuturehighenergyphysicscolliders
AT ivanyushenkovy positronsourcesforfuturehighenergyphysicscolliders
AT lankforda positronsourcesforfuturehighenergyphysicscolliders
AT loischg positronsourcesforfuturehighenergyphysicscolliders
AT moortgatpickg positronsourcesforfuturehighenergyphysicscolliders
AT nagaitsevs positronsourcesforfuturehighenergyphysicscolliders
AT riemanns positronsourcesforfuturehighenergyphysicscolliders
AT sieversp positronsourcesforfuturehighenergyphysicscolliders
AT tenholtc positronsourcesforfuturehighenergyphysicscolliders
AT yokoyak positronsourcesforfuturehighenergyphysicscolliders