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Observation of a neutral charmoniumlike state $Z_c(4025)^0$ in $e^{+} e^{-} \to (D^{*} \bar{D}^{*})^{0} π^0$

Published 9 Jul 2015 in hep-ex | (1507.02404v3)

Abstract: We report a study of the process $e{+} e{-} \to (D{*} \bar{D}{*}){0} \pi0$ using $e+e-$ collision data samples with integrated luminosities of $1092 \rm{pb}{-1}$ at $\sqrt{s}=4.23 \rm{GeV}$ and $826 \rm{pb}{-1}$ at $\sqrt{s}=4.26 \rm{GeV}$ collected with the BESIII detector at the BEPCII storage ring. We observe a new neutral structure near the $(D{*} \bar{D}{*}){0}$ mass threshold in the $\pi0$ recoil mass spectrum, which we denote as $Z_{c}(4025){0}$. Assuming a Breit-Wigner line shape, its pole mass and pole width are determined to be $(4025.5{+2.0}_{-4.7}\pm3.1) \rm{MeV}/c2$ and $(23.0\pm 6.0\pm 1.0) \rm{MeV}$, respectively. The Born cross sections of $e{+}e{-}\to Z_{c}(4025){0} \pi0\to (D{*} \bar{D}{*}){0}\pi0$ are measured to be $(61.6\pm8.2\pm9.0) \rm{pb}$ at $\sqrt{s}=4.23 \rm{GeV}$ and $(43.4\pm8.0\pm5.4) \rm{pb}$ at $\sqrt{s}=4.26 \rm{GeV}$. The first uncertainties are statistical and the second are systematic.

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