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Experimental investigation of $\pi^+\pi^-$ and $K^+K^-$ atoms

The adapted DIRAC experiment at the CERN PS accelerator observed for the first time long-lived hydrogen-like $\pi^+\pi^-$ atoms, produced by protons hitting a beryllium target. A part of these atoms crossed the gap of 96 mm and got broken up in the 2.1 $\mu$m thick platinum foil. Analysing the obser...

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Autor principal: Afanasyev, Leonid
Lenguaje:eng
Publicado: SISSA 2019
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.340.0453
http://cds.cern.ch/record/2702361
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author Afanasyev, Leonid
author_facet Afanasyev, Leonid
author_sort Afanasyev, Leonid
collection CERN
description The adapted DIRAC experiment at the CERN PS accelerator observed for the first time long-lived hydrogen-like $\pi^+\pi^-$ atoms, produced by protons hitting a beryllium target. A part of these atoms crossed the gap of 96 mm and got broken up in the 2.1 $\mu$m thick platinum foil. Analysing the observed number of atomic pairs, $n_A^L= \left.436^{+157}_{-61}\right|_\mathrm{tot}$, the lifetime of the 2$p$ state is found to be ${\tau_{2p}=(\left.0.45^{+1.08}_{-0.30}\right|_\mathrm{tot})\cdot10^{-11}}$s, not contradicting the corresponding QED $2p$ state lifetime ${\tau_{2p}^\mathrm{QED}=1.17 \cdot 10^{-11}}$s. This lifetime value is three orders of magnitude larger than our previously measured value of the $\pi^+\pi^-$ atom ground state lifetime $\tau=(\left.3.15^{+0.28}_{-0.26}\right|_\mathrm{tot})\cdot 10^{-15}$s. Further studies of long-lived $\pi^+\pi^-$ atoms will allow to measure energy differences between $p$ and $s$ atomic states and so to determine $\pi\pi$ scattering lengths with the aim to check QCD predictions. At the same setup, there were identified more than 7000 $K^+K^-$ pairs with effective mass less than $2M_K + 5$ MeV. In the distributions of $K^+K^-$ pairs there is a strong signature of the Coulomb enhancement: the number of pairs increases with decreasing of the relative momentum in the pair c.m.s. The observed number of $K^+K^-$ pairs with small relative momentum will allow us to evaluate for the first time the number of the produced $K^+K^-$ atoms.
id oai-inspirehep.net-1749171
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
publisher SISSA
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spelling oai-inspirehep.net-17491712022-08-10T12:24:23Zdoi:10.22323/1.340.0453http://cds.cern.ch/record/2702361engAfanasyev, LeonidExperimental investigation of $\pi^+\pi^-$ and $K^+K^-$ atomsParticle Physics - ExperimentThe adapted DIRAC experiment at the CERN PS accelerator observed for the first time long-lived hydrogen-like $\pi^+\pi^-$ atoms, produced by protons hitting a beryllium target. A part of these atoms crossed the gap of 96 mm and got broken up in the 2.1 $\mu$m thick platinum foil. Analysing the observed number of atomic pairs, $n_A^L= \left.436^{+157}_{-61}\right|_\mathrm{tot}$, the lifetime of the 2$p$ state is found to be ${\tau_{2p}=(\left.0.45^{+1.08}_{-0.30}\right|_\mathrm{tot})\cdot10^{-11}}$s, not contradicting the corresponding QED $2p$ state lifetime ${\tau_{2p}^\mathrm{QED}=1.17 \cdot 10^{-11}}$s. This lifetime value is three orders of magnitude larger than our previously measured value of the $\pi^+\pi^-$ atom ground state lifetime $\tau=(\left.3.15^{+0.28}_{-0.26}\right|_\mathrm{tot})\cdot 10^{-15}$s. Further studies of long-lived $\pi^+\pi^-$ atoms will allow to measure energy differences between $p$ and $s$ atomic states and so to determine $\pi\pi$ scattering lengths with the aim to check QCD predictions. At the same setup, there were identified more than 7000 $K^+K^-$ pairs with effective mass less than $2M_K + 5$ MeV. In the distributions of $K^+K^-$ pairs there is a strong signature of the Coulomb enhancement: the number of pairs increases with decreasing of the relative momentum in the pair c.m.s. The observed number of $K^+K^-$ pairs with small relative momentum will allow us to evaluate for the first time the number of the produced $K^+K^-$ atoms.SISSAoai:inspirehep.net:17491712019
spellingShingle Particle Physics - Experiment
Afanasyev, Leonid
Experimental investigation of $\pi^+\pi^-$ and $K^+K^-$ atoms
title Experimental investigation of $\pi^+\pi^-$ and $K^+K^-$ atoms
title_full Experimental investigation of $\pi^+\pi^-$ and $K^+K^-$ atoms
title_fullStr Experimental investigation of $\pi^+\pi^-$ and $K^+K^-$ atoms
title_full_unstemmed Experimental investigation of $\pi^+\pi^-$ and $K^+K^-$ atoms
title_short Experimental investigation of $\pi^+\pi^-$ and $K^+K^-$ atoms
title_sort experimental investigation of $\pi^+\pi^-$ and $k^+k^-$ atoms
topic Particle Physics - Experiment
url https://dx.doi.org/10.22323/1.340.0453
http://cds.cern.ch/record/2702361
work_keys_str_mv AT afanasyevleonid experimentalinvestigationofpipiandkkatoms