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- W2022126199 abstract "The normalized orthopositronium quenching rate, ${}_{1}{Z}_{mathrm{eff}}$, has been measured for CH${}_{3}$F, CH${}_{3}$Cl, CH${}_{3}$Br, and CH${}_{3}$I in the gas phase. Silica aerogel was used as the positronium formation medium and the microchambers. The ${}_{1}{Z}_{mathrm{eff}}$ values obtained are ${}_{1}{Z}_{mathrm{eff}}({mathrm{CH}}_{3}mathrm{F})=0.46ifmmodepmelsetextpmfi{}0.03$, ${}_{1}{Z}_{mathrm{eff}}({mathrm{CH}}_{3}mathrm{Cl})=0.58ifmmodepmelsetextpmfi{}0.05$, ${}_{1}{Z}_{mathrm{eff}}({mathrm{CH}}_{3}mathrm{Br})=0.70ifmmodepmelsetextpmfi{}0.04$, and ${}_{1}{Z}_{mathrm{eff}}({mathrm{CH}}_{3}mathrm{I})=2.1ifmmodepmelsetextpmfi{}0.2$. The ${}_{1}{Z}_{mathrm{eff}}$ value for CH${}_{3}$I is significantly larger than expected for pick-off quenching. It is probably caused by spin-conversion quenching through spin-orbit interaction." @default.
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- W2022126199 date "2010-06-25" @default.
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- W2022126199 title "Orthopositronium annihilation rates in gaseous halogenated methanes" @default.
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