Abstract

In charmed $D$ and $D_s$ mesons sector, the matrix of a Hamiltonian in a quark potential model is computed in the $2^3S_1$ and $1^3D_1$ subspace. The masses of four mixed states of $2^3S_1$ and $1^3D_1$ denoted with $D^*_1(2635)$, $D^*_1(2739)$, $D^*_{s1}(2715)$ and $D^*_{s1}(2805)$ are obtained. It is an off-diagonal part of the spin-orbit tensor interaction that causes the mixing between the $2^3S_1$ and $1^3D_1$ states. The mixing angles between the $2^3S_1$ and $1^3D_1$ states are tiny. Under the mixing, a $^3P_0$ model is employed to compute the hadronic decay widths of all OZI-allowed decay channels of the four mixed states. The two light mixed states $D^*_1(2635)$ and $D^*_{s1}(2715)$ are close in mass to $D^*_J(2600)$ and $D^*_{s1}(2700)$, while the two heavy mixed states $D^*_1(2739)$ and $D^*_{s1}(2805)$ are lighter in mass than $D(2750)$ and $D^*_{s1}(2860)$. The mixing angles obtained from dynamical interaction are inconsistent with the mixing angles obtained from hadronic decay. Based on mass spectra and hadronic decay analyses, $D^*_J(2600)$, $D(2750)$, $D^*_{s1}(2700)$ and $D^*_{s1}(2860)$ are impossibly the mixed states of $2^3S_1$ and $1^3D_1$ at the small mixing angles. The inconsistence implies that $D^*_1(2760)$ and $D^*_{s1}(2860)$ have not been properly resolved from present experimental data, or there exist large unknown off-diagonal interactions that result in large mixing angles.

Highlights

  • The inconsistence implies that DÃ1ð2760Þ and DÃs1ð2860Þ have not been properly resolved from present experimental data, or there exist large unknown off-diagonal interactions that result in large mixing angles

  • D and Ds mesons consist of a light quark (u, d, or s) and a heavy c quark, they behave like a hydrogen atom

  • The masses of 1S, 1P, 1D and 2S states of D and Ds have been calculated in the quark potential model

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Summary

INTRODUCTION

D and Ds mesons consist of a light quark (u, d, or s) and a heavy c quark, they behave like a hydrogen atom. DÃð2600Þ and DÃð2760Þ were first observed in inclusive eþe− collisions by the BABAR Collaboration [2] in the decay channels Dþπ−, D0πþ and DÃþπ−, where they were suggested as the 23S1 and 3D1 charmed meson, respectively. In addition to their masses and widths, the branching ratios were measured. The mixing angle changes sign when the internal quark components of the meson are charge conjugated into their antiquarks Their predicted hadronic decay widths at this determined mixing angle in the 3P0 model is consistent with experimental data.

DYNAMICAL MIXING BETWEEN 23S1 AND 13D1
24 SC MSC jχ
DÃ1ð2635Þ and DÃ1ð2739Þ
CONCLUSIONS AND DISCUSSIONS
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