Abstract

Observables of light hadron decays are analyzed in a model of chiral Lagrangian which includes resonance fields of vector mesons. In particular, transition form factors are investigated for Dalitz decays of $V\to Pl^+l^-$ and $P\to \gamma l^+l^-$ $(V=1^-, P=0^-)$. Moreover, the differential decay width of $P\to \pi^+\pi^-\gamma$ and the partial widths of $P\to2\gamma, V\to P\gamma, \eta^\prime\to V\gamma, \phi(1020)\to\omega(782)\pi^0$ and $V\to 3P$ are also calculated. In this study, we consider a model which contains octet and singlet fields as representation of $SU(3)$. As an extension of chiral perturbation theory, we include 1-loop ordered interaction terms. For both pseudoscalar and vector meson, we evaluate mixing matrices in which isospin/$SU(3)$ breaking is taken into account. Furthermore, intrinsic parity violating interactions are considered with singlet fields. For parameter estimation, we carry out $\chi^2$ fittings in which a spectral function of $\tau$ decays, vector meson masses, decay widths of $V\to P\gamma$ and transition form factor of $V\to Pl^+l^-$ are utilized as input data. Using the estimated parameter region in the model, we give predictions for decay widths and transition form factors of intrinsic parity violating decays. As further model predictions, we calculate the transition form factors of $\phi(1020)\to \pi^0l^+l^-$ and $\eta^\prime\to\gamma l^+l^-$ in the vicinity of resonance regions, taking account of the contribution for intermediate $\rho(770)$ and $\omega(782)$.

Highlights

  • For intrinsic parity (IP) violating interactions in the model, we introduce operators including SU(3) singlet fields, in addition to ones suggested in Refs. [18–20]

  • We present how 1-loop counter terms given as Lc are introduced for chiral Lagrangian with vector mesons and pseudoscalar singlet

  • The IP violating phenomena of light hadrons are investigated in the model of chiral Lagrangian including vector mesons

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Summary

INTRODUCTION

Decays of light hadrons play a crucial role to investigate low-energy behavior of quantum chromodynamics (QCD), and are measured extensively in experiments. Finite parts of the coefficients of the counter terms are estimated in the fitting procedure with the experimental observables in the same way as the chiral perturbation theory (ChPT) Once those parameters are determined, one can predict other observables such as TFFs and decay widths. We consider kinetic mixing of neutral vector mesons, which arises from 1-loop correction to the self-energies Including such mixing contribution, we obtain analytic formulae of the widths for V → P P decays. Remaining part of this paper is organized as follows: In Sec. II, the model is introduced and 1-loop ordered interactions are given with SU(3) octets and singlets. We present how 1-loop counter terms given as Lc are introduced for chiral Lagrangian with vector mesons and pseudoscalar singlet. We define the 1-loop ordered ρππ coupling, gρππ

Neutral vector meson
Q2δBV δBV IJ
Mixing between photon and vector meson
Pseudoscalar
INTRINSIC PARITY VIOLATION
Intrinsic parity violating operators with vector mesons
Intrinsic parity violating decays
IV JPi : θiIJ
NUMERICAL ANALYSIS
Parameter fit
Mass and width of vector mesons
Model prediction
Findings
SUMMARY AND DISCUSSION

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