Search for the doubly heavy baryons $\it{\Omega}_{bc}^{\rm0}$ and $\it{\Xi}_{bc}^{\rm0}$ decaying to $\it{\Lambda_{c}^{+}\pi^{-}}$ and $\it{\Xi_{c}^{+}\pi^{-}}$

L. C. R. Aaij,C. Beteta,T. Ackernley, B. Adeva, M. Adinolfi,H. Afsharnia, C. Aidala,S. Aiola, Z. Ajaltouni, S. Akar, J. Albrecht,Federico Alessio, M. Alexander,A. A. Albero, G. Alkhazov,P. Cartelle, A. A. Alves, S. Amato, Y. Amhis, L. An, L. Anderlini,G. Andreassi, M. Andreotti, F. Archilli,J. Romeu, A. Artamonov, M. Artuso,K. Arzymatov, E. Aslanides,M. Atzeni,B. Audurier,S. Bachmann,J. Back, S. Baker, V. Balagura, W. Baldini,A. Baranov,R. Barlow, S. Barsuk, W. Barter,M. Bartolini,F. Baryshnikov,G. Bassi, V. Batozskaya,B. Batsukh,A. Battig, A. Bay, M. Becker, F. Bedeschi, I. Bediaga,A. Beiter,L. Bel,V. Belavin,S. Belin,V. Bellee, K. Belous,I. Belyaev, G. Bencivenni, E. Ben-Haim, S. Benson,S. Beranek, A. Berezhnoy, R. Bernet, D. Berninghoff,H. C. Bernstein, C. Bertella,E. Bertholet, A. Bertolin, C. Betancourt,F. Betti,M. Bettler,I. Bezshyiko,S. Bhasin,J. Bhom,M. Bieker, S. Bifani, P. Billoir, A. Bizzeti,M. Bjørn,M. Blago, T. Blake, F. Blanc, S. Blusk,D. Bobulska, V. Bocci,O. B. 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Lane, G. Lanfranchi, C. Langenbruch,O. Lantwin, T. Latham, F. Lazzari, C. Lazzeroni,R. Gac, R. Lefèvre, A. Leflat, O. Leroy, T. Lesiak, B. Leverington, H. Li, X. Li,Y. Li, Z. Li, X. Liang, R. Lindner,V. Lisovskyi, G. Liu, X. Liu,D. Loh,A. Loi,J. L. Castro, I. Longstaff,J. Lopes, G. Loustau,G. Lovell, Y. Lu, D. Lucchesi,M. Martinez, Y. Luo, A. Lupato, E. Luppi, O. Lupton, A. Lusiani,X. Lyu,S. Maccolini, F. Machefert,F. Maciuc,V. Macko, P. Mackowiak,S. Maddrell-Mander,L. R. M. Mohan, O. Maev, A. Maevskiy,D. Maisuzenko,M. Majewski, S. Malde, B. Malecki, A. Malinin, T. Maltsev, H. Malygina, G. Manca, G. Mancinelli, R. M. Escalero, D. Manuzzi,D. Marangotto, J. Maratas,Jean François Marchand, U. Marconi,S. Mariani,C. Benito,M. Marinangeli, P. Marino, J. Marks,P. Marshall

semanticscholar(2021)

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Abstract
The first search for the doubly heavy $\it{\Omega}_{bc}^{\rm0}$ baryon and a search for $\it{\Xi}_{bc}^{\rm0}$ baryon are performed using $pp$ collision data collected via the LHCb experiment from 2016 to 2018 at a centre-of-mass energy of $13TeV$, corresponding to an integrated luminosity of 5.2$fb^{-1}$. The baryons are reconstructed via their decays to $\it{\Lambda_{c}^{+}\pi^{-}}$ and $\it{\Xi_{c}^{+}\pi^{-}}$. No significant excess is found for invariant masses between 6700 and 7300$MeV/c^2$, in a rapidity range from 2.0 to 4.5 and a transverse momentum range from 2 to 20$GeV/c$. Upper limits are set on the ratio of the $\it{\Omega}_{bc}^{\rm0}$ and $\it{\Xi}_{bc}^{\rm0}$ production cross-section times the branching fraction to $\it{\Lambda_{c}^{+}\pi^{-}}$ ($\it{\Xi_{c}^{+}\pi^{-}}$) relative to that of the $\it{\Lambda_b^{\rm0}}$ ($\it{\Xi_b^{\rm0}}$) baryon, for different lifetime hypotheses, at $95\%$ confidence level. The upper limits range from $0.5\times10^{-4}$ to $2.5\times10^{-4}$ for the $\it{\Omega}_{bc}^{\rm0}\rightarrow\it{\Lambda_{c}^{+}\pi^{-}}$ ($\it{\Xi}_{bc}^{\rm0}\rightarrow\it{\Lambda_{c}^{+}\pi^{-}}$) decay, and from $1.4\times10^{-3}$ to $6.9\times10^{-3}$ for the $\it{\Omega}_{bc}^{\rm0}\rightarrow\it{\Xi_{c}^{+}\pi^{-}}$ ($\it{\Xi}_{bc}^{\rm0}\rightarrow\it{\Xi_{c}^{+}\pi^{-}}$) decay, depending on the considered mass and lifetime of the $\it{\Omega}_{bc}^{\rm0}$ ($\it{\Xi}_{bc}^{\rm0}$) baryon.
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