Cascade time of antiprotons in gaseous hydrogen
Antiprotons moderated in H 2 are captured in the Coulomb field of protons forming p̄p atoms. The time which elapsed between capture into atomic orbits and annihilation has been measured in H 2 at NPT. A cascade time of (5.1±0.7) ns was determined.
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Veröffentlicht in: | Physics letters. B 1988-11, Vol.214 (3), p.325-328 |
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creator | Reifenröther, G. Ahmad, S. Amsler, C. Armenteros, R. Auld, E.G. Axen, D.A. Bailey, D. Barlag, S. Beer, G.A. Bizot, J.C. Botlo, M. Comyn, M. Dahme, W. Delcourt, B. Doser, M. Kuch, K.D. Erdman, K.L. Feld-Dahme, F. Gastaldi, U. Heel, M. Howard, B. Howard, R. Jeanjean, J. Kalinowsky, H. Kayser, F. Klempt, E. Laa, C. Landua, R. Marshall, G.M. May, B. Nguyen, H. Prevot, N. Riedlberger, J. Robertson, L.P. Sabev, C. Schäfer, U. Schreiber, O. Straumann, U. Truoel, P. Vonach, H. Weidenauer, P. White, B.L. Wodrich, W.R. Ziegler, M. |
description | Antiprotons moderated in H
2 are captured in the Coulomb field of protons forming p̄p atoms. The time which elapsed between capture into atomic orbits and annihilation has been measured in H
2 at NPT. A cascade time of (5.1±0.7) ns was determined. |
doi_str_mv | 10.1016/0370-2693(88)91371-8 |
format | Article |
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2 are captured in the Coulomb field of protons forming p̄p atoms. The time which elapsed between capture into atomic orbits and annihilation has been measured in H
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2 are captured in the Coulomb field of protons forming p̄p atoms. The time which elapsed between capture into atomic orbits and annihilation has been measured in H
2 at NPT. 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B</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Reifenröther, G.</au><au>Ahmad, S.</au><au>Amsler, C.</au><au>Armenteros, R.</au><au>Auld, E.G.</au><au>Axen, D.A.</au><au>Bailey, D.</au><au>Barlag, S.</au><au>Beer, G.A.</au><au>Bizot, J.C.</au><au>Botlo, M.</au><au>Comyn, M.</au><au>Dahme, W.</au><au>Delcourt, B.</au><au>Doser, M.</au><au>Kuch, K.D.</au><au>Erdman, K.L.</au><au>Feld-Dahme, F.</au><au>Gastaldi, U.</au><au>Heel, M.</au><au>Howard, B.</au><au>Howard, R.</au><au>Jeanjean, J.</au><au>Kalinowsky, H.</au><au>Kayser, F.</au><au>Klempt, E.</au><au>Laa, C.</au><au>Landua, R.</au><au>Marshall, G.M.</au><au>May, B.</au><au>Nguyen, H.</au><au>Prevot, N.</au><au>Riedlberger, J.</au><au>Robertson, L.P.</au><au>Sabev, C.</au><au>Schäfer, U.</au><au>Schreiber, O.</au><au>Straumann, U.</au><au>Truoel, P.</au><au>Vonach, H.</au><au>Weidenauer, P.</au><au>White, B.L.</au><au>Wodrich, W.R.</au><au>Ziegler, M.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Cascade time of antiprotons in gaseous hydrogen</atitle><jtitle>Physics letters. B</jtitle><date>1988-11-24</date><risdate>1988</risdate><volume>214</volume><issue>3</issue><spage>325</spage><epage>328</epage><pages>325-328</pages><issn>0370-2693</issn><eissn>1873-2445</eissn><abstract>Antiprotons moderated in H
2 are captured in the Coulomb field of protons forming p̄p atoms. The time which elapsed between capture into atomic orbits and annihilation has been measured in H
2 at NPT. A cascade time of (5.1±0.7) ns was determined.</abstract><pub>Elsevier B.V</pub><doi>10.1016/0370-2693(88)91371-8</doi><tpages>4</tpages><orcidid>https://orcid.org/0000-0003-2524-7790</orcidid></addata></record> |
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language | eng |
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source | Elsevier ScienceDirect Journals |
subjects | High Energy Physics - Experiment Physics |
title | Cascade time of antiprotons in gaseous hydrogen |
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