Measurement of $e^+e^- \to \pi^+\pi^-\psi(2S)$ via Initial State Radiation at Belle
X. L. Wang, C. Z. Yuan, C. P. Shen, P. Wang, A. Abdesselam, I. Adachi,, H. Aihara, S. Al Said, K. Arinstein, D. M. Asner, R. Ayad, A. M. Bakich, V., Bansal, B. Bhuyan, A. Bobrov, G. Bonvicini, M. Bra\v{c}ko, T. E. Browder, D., \v{C}ervenkov, P. Chang, V. Chekelian, A. Chen

TL;DR
This paper measures the cross section of e+e- to pi+pi- psi(2S) using initial state radiation at Belle, determining properties of Y(4360) and Y(4660) states and observing a charged charmonium-like structure.
Contribution
First measurement of e+e- to pi+pi- psi(2S) cross section via ISR at Belle, with detailed resonance parameters and evidence for a charged charmonium-like state.
Findings
Determined masses and widths of Y(4360) and Y(4660) states.
Identified two solutions with different e+e- couplings.
Observed evidence for a charged charmonium-like structure at 4.05 GeV/c^2.
Abstract
We report measurement of the cross section of between 4.0 and , based on an analysis of initial state radiation events in a data sample recorded with the Belle detector. The properties of the and states are determined. Fitting the mass spectrum of with two coherent Breit-Wigner functions, we find two solutions with identical mass and width but different couplings to electron-positron pairs: , , , ; and and ${\cal{B}}[Y(4660)\to \pi^+\pi^-\psi(2S)]\cdot \Gamma_{Y(4660)}^{e^+e^-} = (8.1\pm 1.1\pm 0.5) \rm…
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