Pion capture and hydrogen bonds in deuterated methanol
The probability of pion capture by hydrogen was measured for CH{sub 3}OH, CD{sub 3}OH, and CH{sub 3}OD as a function of temperature from {minus}150 to +250 {degree}C. The nuclear capture of a pion by a proton was identified using the pion charge-exchange reaction. The coincident photons from the {pi...
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Veröffentlicht in: | Physical review. A, Atomic, molecular, and optical physics Atomic, molecular, and optical physics, 1991-08, Vol.44 (3), p.1725-1732 |
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creator | HORVATH, D MEASDAY, D. F ANIOL, K. A ENTEZAMI, F HASINOFF, M NOBLE, A. J STANISLAUS, S VIRTUE, C. J CLOUGH, A. S SMITH, J. R. H SALOMON, M |
description | The probability of pion capture by hydrogen was measured for CH{sub 3}OH, CD{sub 3}OH, and CH{sub 3}OD as a function of temperature from {minus}150 to +250 {degree}C. The nuclear capture of a pion by a proton was identified using the pion charge-exchange reaction. The coincident photons from the {pi}{sup 0} decay were detected by TRIUMF's large NaI spectrometers. We have found a relative difference of 1.79{plus minus}0.11 in the pion capture probability in solid and supercritical CD{sub 3}OH that is interpreted in terms of the hydrogen-bond-breaking model. |
doi_str_mv | 10.1103/PhysRevA.44.1725 |
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F ; ANIOL, K. A ; ENTEZAMI, F ; HASINOFF, M ; NOBLE, A. J ; STANISLAUS, S ; VIRTUE, C. J ; CLOUGH, A. S ; SMITH, J. R. H ; SALOMON, M</creator><creatorcontrib>HORVATH, D ; MEASDAY, D. F ; ANIOL, K. A ; ENTEZAMI, F ; HASINOFF, M ; NOBLE, A. J ; STANISLAUS, S ; VIRTUE, C. J ; CLOUGH, A. S ; SMITH, J. R. H ; SALOMON, M</creatorcontrib><description>The probability of pion capture by hydrogen was measured for CH{sub 3}OH, CD{sub 3}OH, and CH{sub 3}OD as a function of temperature from {minus}150 to +250 {degree}C. The nuclear capture of a pion by a proton was identified using the pion charge-exchange reaction. The coincident photons from the {pi}{sup 0} decay were detected by TRIUMF's large NaI spectrometers. 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We have found a relative difference of 1.79{plus minus}0.11 in the pion capture probability in solid and supercritical CD{sub 3}OH that is interpreted in terms of the hydrogen-bond-breaking model.</description><subject>640303 - Atomic, Molecular & Chemical Physics- Positronium, Muonium, & Muonic & Mesic Atoms & Molecules</subject><subject>ALCOHOLS</subject><subject>Atomic and molecular collision processes and interactions</subject><subject>ATOMIC AND MOLECULAR PHYSICS</subject><subject>CAPTURE</subject><subject>CHARGE EXCHANGE</subject><subject>Charge transfer</subject><subject>CHARGED-PARTICLE REACTIONS</subject><subject>CHEMICAL REACTIONS</subject><subject>DEUTERATION</subject><subject>Exact sciences and technology</subject><subject>HADRON REACTIONS</subject><subject>HIGH TEMPERATURE</subject><subject>HYDROXY COMPOUNDS</subject><subject>MEASURING METHODS</subject><subject>MESON REACTIONS</subject><subject>METHANOL</subject><subject>NUCLEAR REACTIONS</subject><subject>ORGANIC COMPOUNDS</subject><subject>Physics</subject><subject>PION REACTIONS</subject><subject>PROBABILITY</subject><issn>1050-2947</issn><issn>1094-1622</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>1991</creationdate><recordtype>article</recordtype><recordid>eNo9kM1LAzEQxYMotX7cvQiLePCydbJJdpOjiF8gKKLnkE2mdmWb1CQr9L93S6tzmYH3e4_hEXJGYUYpsOvXxTq94c_NjPMZbSqxR6YUFC9pXVX7m1tAWSneHJKjlL5gHC7VhEyUgppymJL6tQu-sGaVh4iF8a5YrF0Mn-iLNniXis4XDoeM0WR0xRLzwvjQn5CDuekTnu72Mfm4v3u_fSyfXx6ebm-eS8sEzyUTgMYxqxonjGINrx1XRs5bYdoaoZIcoVZt2-D4e614xVoEMACulU5Sx47JxTY3pNzpZLuMdmGD92izFqwREsQIXW2hVQzfA6asl12y2PfGYxiSplKoClTdwIjCFrUxpBRxrlexW5q41hT0plH916jmXG8aHS3nu_ShXaL7N-wqHPXLnW6SNf08Gm-79I8JTqVkkv0C3El-NA</recordid><startdate>19910801</startdate><enddate>19910801</enddate><creator>HORVATH, D</creator><creator>MEASDAY, D. 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H</au><au>SALOMON, M</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Pion capture and hydrogen bonds in deuterated methanol</atitle><jtitle>Physical review. A, Atomic, molecular, and optical physics</jtitle><addtitle>Phys Rev A</addtitle><date>1991-08-01</date><risdate>1991</risdate><volume>44</volume><issue>3</issue><spage>1725</spage><epage>1732</epage><pages>1725-1732</pages><issn>1050-2947</issn><eissn>1094-1622</eissn><coden>PLRAAN</coden><abstract>The probability of pion capture by hydrogen was measured for CH{sub 3}OH, CD{sub 3}OH, and CH{sub 3}OD as a function of temperature from {minus}150 to +250 {degree}C. The nuclear capture of a pion by a proton was identified using the pion charge-exchange reaction. The coincident photons from the {pi}{sup 0} decay were detected by TRIUMF's large NaI spectrometers. 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subjects | 640303 - Atomic, Molecular & Chemical Physics- Positronium, Muonium, & Muonic & Mesic Atoms & Molecules ALCOHOLS Atomic and molecular collision processes and interactions ATOMIC AND MOLECULAR PHYSICS CAPTURE CHARGE EXCHANGE Charge transfer CHARGED-PARTICLE REACTIONS CHEMICAL REACTIONS DEUTERATION Exact sciences and technology HADRON REACTIONS HIGH TEMPERATURE HYDROXY COMPOUNDS MEASURING METHODS MESON REACTIONS METHANOL NUCLEAR REACTIONS ORGANIC COMPOUNDS Physics PION REACTIONS PROBABILITY |
title | Pion capture and hydrogen bonds in deuterated methanol |
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