High Energy Physics - Phenomenology
[Submitted on 29 Sep 2021 (v1), last revised 25 Jul 2022 (this version, v3)]
Title:Induced fission-like process of hadronic molecular states
View PDFAbstract:In this work, we predict a new physical phenomenon, induced fission-like process and chain reaction of hadronic molecular states. As a molecular state, if induced by a $D$ meson, the $X(3872)$ can split into $D\bar{D}$ final state which is forbidden due to the spin-parity conservation. The breeding of the $D$ meson of the reaction, such as $D^0X(3872)\to D^0\bar{D}^0D^0$, makes the chain reaction of $X(3872)$ matter possible. We estimate the cross section of the $D$ meson induced fission-like process of $X(3872)$ into two $D$ mesons. With very small $D^0$ beam momentum of 1 eV, the total cross section reaches an order of 1000 b, and decreases rapidly with the increasing of beam momentum. With the transition of $D^*$ meson in molecular states to a $D$ meson, the $X(3872)$ can release large energy, which is acquired by the final mesons. The momentum distributions of the final $D$ mesons are analyzed. In the laboratory frame, the spectator $D$ meson in molecular state concentrates in the low momentum area. The energy from the transition frim $D^*$ to $D$ meson is mainly acquired by two scattered $D$ mesons. The results suggest that the $D$ meson environment will lead to the induced fission-like process and chain reaction of the $X(3827)$. Such phenomenon can be extended to other hadronic molecular states.
Submission history
From: Jun He Prof. [view email][v1] Wed, 29 Sep 2021 12:59:37 UTC (249 KB)
[v2] Sat, 23 Oct 2021 09:47:26 UTC (35,948 KB)
[v3] Mon, 25 Jul 2022 09:24:46 UTC (1,632 KB)
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