The charged and neutral pion masses revisited

Results from neutrino mass and oscillation experiments now set the mass of the muon neutrino to less than 2 eV/c2. This fact, together with our former measurement of the muon momentum in pion decay at rest, pμ+=(29.79200±0.00011) MeV/c, allows us to directly determine the charged pion mass with 1 pp...

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Main Authors: M. Daum, R. Frosch, P.-R. Kettle
Format: Article
Language:English
Published: Elsevier 2019-09-01
Series:Physics Letters B
Online Access:http://www.sciencedirect.com/science/article/pii/S0370269319304848
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spelling doaj-51b687dfc3954496820e122f28c4fdd92020-11-25T02:22:56ZengElsevierPhysics Letters B0370-26932019-09-017961114The charged and neutral pion masses revisitedM. Daum0R. Frosch1P.-R. Kettle2Corresponding author.; PSI, Paul Scherrer Institute, CH-5232 Villigen PSI, SwitzerlandPSI, Paul Scherrer Institute, CH-5232 Villigen PSI, SwitzerlandPSI, Paul Scherrer Institute, CH-5232 Villigen PSI, SwitzerlandResults from neutrino mass and oscillation experiments now set the mass of the muon neutrino to less than 2 eV/c2. This fact, together with our former measurement of the muon momentum in pion decay at rest, pμ+=(29.79200±0.00011) MeV/c, allows us to directly determine the charged pion mass with 1 ppm precision which constitutes the most precise value of the charged pion mass to date, mπ+=(139.57021±0.00014)MeV/c2. This value is within 1.44 σ of the Particle Data Group's compilation of the charged pion mass value, mπ±=(139.57061±0.00024) MeV/c2. From pμ+ we derive the kinetic energy of the muon, Tμ+=(4.11984±0.00003) MeV and the mass difference, mπ+−mμ+=(33.91184±0.00014) MeV/c2. From our new mπ+ value, assuming CPT invariance (mπ−=mπ+) and our measured mass difference Dπ=mπ−−mπ0=(4.59364±0.00048) MeV/c2 we obtain a new value for the neutral pion mass, mπ0=(134.97657±0.00050) MeV/c2. One also obtains a new quantitative measure of CPT invariance in the pion sector: (mπ+−mπ−)/mπ(av)=(−2.9±2.0)⋅10−6, an improvement by two orders of magnitude. Keywords: Pion mass, CPT invariancehttp://www.sciencedirect.com/science/article/pii/S0370269319304848
collection DOAJ
language English
format Article
sources DOAJ
author M. Daum
R. Frosch
P.-R. Kettle
spellingShingle M. Daum
R. Frosch
P.-R. Kettle
The charged and neutral pion masses revisited
Physics Letters B
author_facet M. Daum
R. Frosch
P.-R. Kettle
author_sort M. Daum
title The charged and neutral pion masses revisited
title_short The charged and neutral pion masses revisited
title_full The charged and neutral pion masses revisited
title_fullStr The charged and neutral pion masses revisited
title_full_unstemmed The charged and neutral pion masses revisited
title_sort charged and neutral pion masses revisited
publisher Elsevier
series Physics Letters B
issn 0370-2693
publishDate 2019-09-01
description Results from neutrino mass and oscillation experiments now set the mass of the muon neutrino to less than 2 eV/c2. This fact, together with our former measurement of the muon momentum in pion decay at rest, pμ+=(29.79200±0.00011) MeV/c, allows us to directly determine the charged pion mass with 1 ppm precision which constitutes the most precise value of the charged pion mass to date, mπ+=(139.57021±0.00014)MeV/c2. This value is within 1.44 σ of the Particle Data Group's compilation of the charged pion mass value, mπ±=(139.57061±0.00024) MeV/c2. From pμ+ we derive the kinetic energy of the muon, Tμ+=(4.11984±0.00003) MeV and the mass difference, mπ+−mμ+=(33.91184±0.00014) MeV/c2. From our new mπ+ value, assuming CPT invariance (mπ−=mπ+) and our measured mass difference Dπ=mπ−−mπ0=(4.59364±0.00048) MeV/c2 we obtain a new value for the neutral pion mass, mπ0=(134.97657±0.00050) MeV/c2. One also obtains a new quantitative measure of CPT invariance in the pion sector: (mπ+−mπ−)/mπ(av)=(−2.9±2.0)⋅10−6, an improvement by two orders of magnitude. Keywords: Pion mass, CPT invariance
url http://www.sciencedirect.com/science/article/pii/S0370269319304848
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