# The $e^+ e^-\to K^+ K^- \pi^+\pi^-$, $K^+ K^- \pi^0\pi^0$ and $K^+ K^-   K^+ K^-$ Cross Sections Measured with Initial-State Radiation

**Authors:** The BABAR Collaboration: B. Aubert, et al

arXiv: 0704.0630 · 2010-04-12

## TL;DR

This paper measures cross sections for specific e+e- to hadron processes using initial-state radiation, identifying intermediate states and charmonium contributions, and setting limits on Y(4260) decay modes.

## Contribution

First measurements of e+e- to K+K- pi0 pi0 and K+K- K+K- cross sections using ISR, with detailed analysis of intermediate states and charmonium contributions.

## Key findings

- Identified contributions from various intermediate states.
- Measured cross sections for e+e- to K+K- pi0 pi0 and K+K- K+K-.
- Observed J/psi and psi(2S) in all three final states.

## Abstract

We study the processes $e^+ e^-\to K^+ K^- \pi^+\pi^-\gamma$, $K^+K^-\pi^0\pi^0\gamma$ and $K^+ K^- K^+ K^-\gamma$, where the photon is radiated from the initial state. About 34600, 4400 and 2300 fully reconstructed events, respectively, are selected from 232 \invfb of \babar data. The invariant mass of the hadronic final state defines the effective \epem center-of-mass energy, so that the $K^+ K^- \pi^+\pi^-\gamma$ data can be compared with direct measurements of the $e^+ e^-\to K^+K^- \pipi$ reaction; no direct measurements exist for the $e^+ e^-\to K^+ K^- \pi^0\pi^0$ or $\epem\to K^+ K^- K^+ K^-$ reactions. Studying the structure of these events, we find contributions from a number of intermediate states, and we extract their cross sections where possible. In particular, we isolate the contribution from $e^+ e^-\to\phi(1020) f_{0}(980)$ and study its structure near threshold. In the charmonium region, we observe the $J/\psi$ in all three final states and several intermediate states, as well as the $\psi(2S)$ in some modes, and measure the corresponding branching fractions. We see no signal for the Y(4260) and obtain an upper limit of $\BR_{Y(4260)\to\phi\pi^+\pi^-}\cdot\Gamma^{Y}_{ee}<0.4 \ev$ at 90% C.L.

## Full text

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## Figures

54 figures with captions in the complete paper: https://tomesphere.com/paper/0704.0630/full.md

## References

25 references — full list in the complete paper: https://tomesphere.com/paper/0704.0630/full.md

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Source: https://tomesphere.com/paper/0704.0630