Observation of new charmonium(-like) states in $B^+ \to D^{*\pm} D^{\mp} K^+$ decays
LHCb collaboration: R. Aaij, A.S.W. Abdelmotteleb, C. Abellan Beteta,, F. Abudin\'en, T. Ackernley, A. A. Adefisoye, B. Adeva, M. Adinolfi, P., Adlarson, C. Agapopoulou, C.A. Aidala, Z. Ajaltouni, S. Akar, K. Akiba, P., Albicocco, J. Albrecht, F. Alessio, M. Alexander

TL;DR
This paper reports the observation of four charmonium-like states and confirms two other resonances in B+ decays, revealing new states and providing insights into their quantum numbers through amplitude analysis of LHCb data.
Contribution
It presents the first observation of four charmonium-like states decaying into D*±D∓ and confirms two resonances in a different decay channel, expanding knowledge of exotic hadrons.
Findings
Four new charmonium(-like) states observed with specific quantum numbers.
Confirmation of the existence of T* resonances in a new production channel.
At least three states observed are previously unreported.
Abstract
A study of resonant structures in and decays is performed, using proton-proton collision data at centre-of-mass energies of , and TeV recorded by the LHCb experiment, corresponding to an integrated luminosity of 9 fb. A simultaneous amplitude fit is performed to the two channels with contributions from resonances decaying to and states linked by parity. This procedure allows the -parities of resonances in the mass spectra to be determined. Four charmonium(-like) states are observed decaying into : , , and , with quantum numbers equal to , , and , respectively. At least three of these states have not been…
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