Cargando…

Efficient transfer of positrons from a buffer-gas-cooled accumulator into an orthogonally oriented superconducting solenoid for antihydrogen studies

Positrons accumulated in a room-temperature buffer-gas-cooled positron accumulator are efficiently transferred into a superconducting solenoid which houses the ATRAP cryogenic Penning trap used in antihydrogen research. The positrons are guided along a 9 m long magnetic guide that connects the centr...

Descripción completa

Detalles Bibliográficos
Autores principales: Comeau, D, Dror, A, Fitzakerley, D, George, M C, Hessels, E A, Storry, C H, Weel, M, Grzonka, D, Oelert, W, Gabrielse, G, Kalra, R, Kolthammer, W S, McConnell, R, Richerme, P, Mullers, A, Walz, J
Lenguaje:eng
Publicado: 2012
Materias:
XX
Acceso en línea:https://dx.doi.org/10.1088/1367-2630/14/4/045006
http://cds.cern.ch/record/1489601
_version_ 1780926342176440320
author Comeau, D
Dror, A
Fitzakerley, D
George, M C
Hessels, E A
Storry, C H
Weel, M
Grzonka, D
Oelert, W
Gabrielse, G
Kalra, R
Kolthammer, W S
McConnell, R
Richerme, P
Mullers, A
Walz, J
author_facet Comeau, D
Dror, A
Fitzakerley, D
George, M C
Hessels, E A
Storry, C H
Weel, M
Grzonka, D
Oelert, W
Gabrielse, G
Kalra, R
Kolthammer, W S
McConnell, R
Richerme, P
Mullers, A
Walz, J
author_sort Comeau, D
collection CERN
description Positrons accumulated in a room-temperature buffer-gas-cooled positron accumulator are efficiently transferred into a superconducting solenoid which houses the ATRAP cryogenic Penning trap used in antihydrogen research. The positrons are guided along a 9 m long magnetic guide that connects the central field lines of the 0.15 T field in the positron accumulator to the central magnetic field lines of the superconducting solenoid. Seventy independently controllable electromagnets are required to overcome the fringing field of the large-bore superconducting solenoid. The guide includes both a 15 degrees upward bend and a 105 degrees downward bend to account for the orthogonal orientation of the positron accumulator with respect to the cryogenic Penning trap. Low-energy positrons ejected from the accumulator follow the magnetic field lines within the guide and are transferred into the superconducting solenoid with nearly 100% efficiency. A 7 m long 5 cm diameter stainless-steel tube and a 20 mm long, 1.5 mm diameter cryogenic pumping restriction ensure that the 10(-2) mbar pressure in the accumulator is isolated well from the extreme vacuum required in the Penning trap to allow for long antimatter storage times.
id cern-1489601
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
record_format invenio
spelling cern-14896012019-09-30T06:29:59Zdoi:10.1088/1367-2630/14/4/045006http://cds.cern.ch/record/1489601engComeau, DDror, AFitzakerley, DGeorge, M CHessels, E AStorry, C HWeel, MGrzonka, DOelert, WGabrielse, GKalra, RKolthammer, W SMcConnell, RRicherme, PMullers, AWalz, JEfficient transfer of positrons from a buffer-gas-cooled accumulator into an orthogonally oriented superconducting solenoid for antihydrogen studiesXXPositrons accumulated in a room-temperature buffer-gas-cooled positron accumulator are efficiently transferred into a superconducting solenoid which houses the ATRAP cryogenic Penning trap used in antihydrogen research. The positrons are guided along a 9 m long magnetic guide that connects the central field lines of the 0.15 T field in the positron accumulator to the central magnetic field lines of the superconducting solenoid. Seventy independently controllable electromagnets are required to overcome the fringing field of the large-bore superconducting solenoid. The guide includes both a 15 degrees upward bend and a 105 degrees downward bend to account for the orthogonal orientation of the positron accumulator with respect to the cryogenic Penning trap. Low-energy positrons ejected from the accumulator follow the magnetic field lines within the guide and are transferred into the superconducting solenoid with nearly 100% efficiency. A 7 m long 5 cm diameter stainless-steel tube and a 20 mm long, 1.5 mm diameter cryogenic pumping restriction ensure that the 10(-2) mbar pressure in the accumulator is isolated well from the extreme vacuum required in the Penning trap to allow for long antimatter storage times.oai:cds.cern.ch:14896012012
spellingShingle XX
Comeau, D
Dror, A
Fitzakerley, D
George, M C
Hessels, E A
Storry, C H
Weel, M
Grzonka, D
Oelert, W
Gabrielse, G
Kalra, R
Kolthammer, W S
McConnell, R
Richerme, P
Mullers, A
Walz, J
Efficient transfer of positrons from a buffer-gas-cooled accumulator into an orthogonally oriented superconducting solenoid for antihydrogen studies
title Efficient transfer of positrons from a buffer-gas-cooled accumulator into an orthogonally oriented superconducting solenoid for antihydrogen studies
title_full Efficient transfer of positrons from a buffer-gas-cooled accumulator into an orthogonally oriented superconducting solenoid for antihydrogen studies
title_fullStr Efficient transfer of positrons from a buffer-gas-cooled accumulator into an orthogonally oriented superconducting solenoid for antihydrogen studies
title_full_unstemmed Efficient transfer of positrons from a buffer-gas-cooled accumulator into an orthogonally oriented superconducting solenoid for antihydrogen studies
title_short Efficient transfer of positrons from a buffer-gas-cooled accumulator into an orthogonally oriented superconducting solenoid for antihydrogen studies
title_sort efficient transfer of positrons from a buffer-gas-cooled accumulator into an orthogonally oriented superconducting solenoid for antihydrogen studies
topic XX
url https://dx.doi.org/10.1088/1367-2630/14/4/045006
http://cds.cern.ch/record/1489601
work_keys_str_mv AT comeaud efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT drora efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT fitzakerleyd efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT georgemc efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT hesselsea efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT storrych efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT weelm efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT grzonkad efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT oelertw efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT gabrielseg efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT kalrar efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT kolthammerws efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT mcconnellr efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT richermep efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT mullersa efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies
AT walzj efficienttransferofpositronsfromabuffergascooledaccumulatorintoanorthogonallyorientedsuperconductingsolenoidforantihydrogenstudies