Addressing the S-wave scalar f0(1500)-resonance in quasi-four-body FCNC rare Bs f0(1500) ( π+ π- ) + - / ν ν decays
Xue Zheng, Hai-Bing Fu, Dan-Dan Hu, Jing-Kai Yang, Jian-Qi Chen, Wan-Bing Luo
Abstract
The f0(1500) is a quite special resonance in the light scalar spectrum. Compared with other nearby resonance, it has an unexpectedly narrow decay width. Since its mass region overlaps strongly with f0(1370) and f0(980), physicists have long debated its internal structure. To explore this issue, this work adopted the conventional quark-antiquark qq picture and investigated the behavior of the f0(1500)-resonance in quasi-four-body decay channels. Based on this, we constructed a twist-2 light-cone distribution amplitude(LCDA) schemes based on the light-cone harmonic oscillator model, and presented their moments ξn 2;f0(1500) |μ and Gegenbauer moments an;f0(1500)(μ) at μ0=1~GeV and μk= 3~GeV for n=1,3,5. Meanwhile, the Bs f0(1500) transition form factors (TFFs) are calculated by using the QCD light-cone sum rule. Then, we obtained the three TFFs at large recoil point, i.e., f + Bs f0(1500)(0)= 0.390-0.046 + 0.047, f-Bs f0(1500)(0)= -0.460-0.055 + 0.051, and f TBs f0(1500)(0)= 0.568 + 0.069-0.065. In addition, we extrapolated TFFs to the whole physical q2-region by using the simplified z(q2)-series expansion. Then we computed the branching fractions of the quasi-four-body rare decays Bs f0(1500)( π + π-) + - and Bs f0(1500)( π + π-)νν. For comparison, we also present the results of the corresponding three-body decays obtained under the narrow-width approximation. Finally, we show the distribution of the double-differential decay width d2Γ/ds dq2 for the quasi-four-body decay Bs f0(1500)(π + π-)μ + μ-. We hope that our predictions can provide a useful theoretical reference for future experimental measurements and phenomenological research.
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