Searching for a $$D {\bar{D}}$$ DD¯ bound state with the $$\psi (3770) \rightarrow \gamma D^0 {\bar{D}}^0$$ ψ(3770)→γD0D¯0 decay

Abstract We perform a calculation of the mass distribution in the $$\psi (3770) \rightarrow \gamma D {\bar{D}}$$ ψ(3770)→γDD¯ decay, studying both the $$D^+ D^- $$ D+D- and $$D^0 {\bar{D}}^0 $$ D0D¯0 decays. The electromagnetic interaction is such that the tree level amplitude is null for the neutra...

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Main Authors: Lianrong Dai, Genaro Toledo, Eulogio Oset
Format: Article
Language:English
Published: SpringerOpen 2020-06-01
Series:European Physical Journal C: Particles and Fields
Online Access:http://link.springer.com/article/10.1140/epjc/s10052-020-8058-8
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spelling doaj-9cdd79318cbd4245b087a5899e3e5df42020-11-25T03:38:25ZengSpringerOpenEuropean Physical Journal C: Particles and Fields1434-60441434-60522020-06-018061810.1140/epjc/s10052-020-8058-8Searching for a $$D {\bar{D}}$$ DD¯ bound state with the $$\psi (3770) \rightarrow \gamma D^0 {\bar{D}}^0$$ ψ(3770)→γD0D¯0 decayLianrong Dai0Genaro Toledo1Eulogio Oset2School of Science, Huzhou UniversityInstituto de Física, Universidad Nacional Autónoma de MéxicoDepartamento de Física Teórica and IFIC, Centro Mixto Universidad de Valencia-CSIC Institutos de Investigación de PaternaAbstract We perform a calculation of the mass distribution in the $$\psi (3770) \rightarrow \gamma D {\bar{D}}$$ ψ(3770)→γDD¯ decay, studying both the $$D^+ D^- $$ D+D- and $$D^0 {\bar{D}}^0 $$ D0D¯0 decays. The electromagnetic interaction is such that the tree level amplitude is null for the neutral channel, which forces the $$\psi (3770) \rightarrow \gamma D^0 {\bar{D}}^0$$ ψ(3770)→γD0D¯0 transition to go through a loop involving the $$D^+ D^- \rightarrow D^0 {\bar{D}}^0$$ D+D-→D0D¯0 scattering amplitude. We take the results for this amplitude from a theoretical model that predicts a $$D {\bar{D}}$$ DD¯ bound state and find a $$D^0 {\bar{D}}^0 $$ D0D¯0 mass distribution in the decay drastically different than phase space. The rates obtained are relatively large and the experiment is easily feasible in the present BESIII facility. The performance of this experiment could provide an answer to the issue of this much searched for state, which is the analogue of the $$f_0(980)$$ f0(980) resonance.http://link.springer.com/article/10.1140/epjc/s10052-020-8058-8
collection DOAJ
language English
format Article
sources DOAJ
author Lianrong Dai
Genaro Toledo
Eulogio Oset
spellingShingle Lianrong Dai
Genaro Toledo
Eulogio Oset
Searching for a $$D {\bar{D}}$$ DD¯ bound state with the $$\psi (3770) \rightarrow \gamma D^0 {\bar{D}}^0$$ ψ(3770)→γD0D¯0 decay
European Physical Journal C: Particles and Fields
author_facet Lianrong Dai
Genaro Toledo
Eulogio Oset
author_sort Lianrong Dai
title Searching for a $$D {\bar{D}}$$ DD¯ bound state with the $$\psi (3770) \rightarrow \gamma D^0 {\bar{D}}^0$$ ψ(3770)→γD0D¯0 decay
title_short Searching for a $$D {\bar{D}}$$ DD¯ bound state with the $$\psi (3770) \rightarrow \gamma D^0 {\bar{D}}^0$$ ψ(3770)→γD0D¯0 decay
title_full Searching for a $$D {\bar{D}}$$ DD¯ bound state with the $$\psi (3770) \rightarrow \gamma D^0 {\bar{D}}^0$$ ψ(3770)→γD0D¯0 decay
title_fullStr Searching for a $$D {\bar{D}}$$ DD¯ bound state with the $$\psi (3770) \rightarrow \gamma D^0 {\bar{D}}^0$$ ψ(3770)→γD0D¯0 decay
title_full_unstemmed Searching for a $$D {\bar{D}}$$ DD¯ bound state with the $$\psi (3770) \rightarrow \gamma D^0 {\bar{D}}^0$$ ψ(3770)→γD0D¯0 decay
title_sort searching for a $$d {\bar{d}}$$ dd¯ bound state with the $$\psi (3770) \rightarrow \gamma d^0 {\bar{d}}^0$$ ψ(3770)→γd0d¯0 decay
publisher SpringerOpen
series European Physical Journal C: Particles and Fields
issn 1434-6044
1434-6052
publishDate 2020-06-01
description Abstract We perform a calculation of the mass distribution in the $$\psi (3770) \rightarrow \gamma D {\bar{D}}$$ ψ(3770)→γDD¯ decay, studying both the $$D^+ D^- $$ D+D- and $$D^0 {\bar{D}}^0 $$ D0D¯0 decays. The electromagnetic interaction is such that the tree level amplitude is null for the neutral channel, which forces the $$\psi (3770) \rightarrow \gamma D^0 {\bar{D}}^0$$ ψ(3770)→γD0D¯0 transition to go through a loop involving the $$D^+ D^- \rightarrow D^0 {\bar{D}}^0$$ D+D-→D0D¯0 scattering amplitude. We take the results for this amplitude from a theoretical model that predicts a $$D {\bar{D}}$$ DD¯ bound state and find a $$D^0 {\bar{D}}^0 $$ D0D¯0 mass distribution in the decay drastically different than phase space. The rates obtained are relatively large and the experiment is easily feasible in the present BESIII facility. The performance of this experiment could provide an answer to the issue of this much searched for state, which is the analogue of the $$f_0(980)$$ f0(980) resonance.
url http://link.springer.com/article/10.1140/epjc/s10052-020-8058-8
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