Muonium production from fine silica powder
The muonium atom {mu}{sup +}{ital e}{sup {minus}} is a simple system from which to gain information about the {ital e}-{mu} interaction both to test the existing theory of QED and to search for physics beyond the standard model. A systematic study has been carried out of the production and propertie...
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Veröffentlicht in: | Physical review. A, Atomic, molecular, and optical physics Atomic, molecular, and optical physics, 1990-07, Vol.42 (1), p.161-169 |
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container_title | Physical review. A, Atomic, molecular, and optical physics |
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creator | Janissen, AC Beer, GA Mason, GR Olin, A Huber, TM Kunselman, AR Bowen, T Halverson, PG Fry, CA Kendall, KR Marshall, GM Warren, JB |
description | The muonium atom {mu}{sup +}{ital e}{sup {minus}} is a simple system from which to gain information about the {ital e}-{mu} interaction both to test the existing theory of QED and to search for physics beyond the standard model. A systematic study has been carried out of the production and properties of thermal muonium from a fine silica powder. The velocity and angular distributions are examined, as well as the experimental conditions resulting in the optimum production rate. The particular properties of silica powder that give it its muonium-producing capability are investigated. These studies are carried out in the context of a diffusion model, the validity of which is examined. |
doi_str_mv | 10.1103/PhysRevA.42.161 |
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A systematic study has been carried out of the production and properties of thermal muonium from a fine silica powder. The velocity and angular distributions are examined, as well as the experimental conditions resulting in the optimum production rate. The particular properties of silica powder that give it its muonium-producing capability are investigated. 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A, Atomic, molecular, and optical physics</title><addtitle>Phys Rev A</addtitle><description>The muonium atom {mu}{sup +}{ital e}{sup {minus}} is a simple system from which to gain information about the {ital e}-{mu} interaction both to test the existing theory of QED and to search for physics beyond the standard model. A systematic study has been carried out of the production and properties of thermal muonium from a fine silica powder. The velocity and angular distributions are examined, as well as the experimental conditions resulting in the optimum production rate. The particular properties of silica powder that give it its muonium-producing capability are investigated. 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A, Atomic, molecular, and optical physics</jtitle><addtitle>Phys Rev A</addtitle><date>1990-07-01</date><risdate>1990</risdate><volume>42</volume><issue>1</issue><spage>161</spage><epage>169</epage><pages>161-169</pages><issn>1050-2947</issn><issn>0556-2791</issn><eissn>1094-1622</eissn><abstract>The muonium atom {mu}{sup +}{ital e}{sup {minus}} is a simple system from which to gain information about the {ital e}-{mu} interaction both to test the existing theory of QED and to search for physics beyond the standard model. A systematic study has been carried out of the production and properties of thermal muonium from a fine silica powder. The velocity and angular distributions are examined, as well as the experimental conditions resulting in the optimum production rate. The particular properties of silica powder that give it its muonium-producing capability are investigated. 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subjects | 640303 - Atomic, Molecular & Chemical Physics- Positronium, Muonium, & Muonic & Mesic Atoms & Molecules ANTILEPTONS ANTIMATTER ANTIPARTICLES ATOMIC AND MOLECULAR PHYSICS BOUND STATE CHALCOGENIDES DIFFUSION ELEMENTARY PARTICLES EMISSION FERMIONS LEPTONS MINERALS MUONIUM MUONS MUONS PLUS OXIDE MINERALS OXIDES OXYGEN COMPOUNDS PARAMETRIC ANALYSIS POWDERS PRODUCTION SILICA SILICON COMPOUNDS SILICON OXIDES SLOWING-DOWN THERMALIZATION |
title | Muonium production from fine silica powder |
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