Papers
Topics
Authors
Recent
Assistant
AI Research Assistant
Well-researched responses based on relevant abstracts and paper content.
Custom Instructions Pro
Preferences or requirements that you'd like Emergent Mind to consider when generating responses.
Gemini 2.5 Flash
Gemini 2.5 Flash 71 tok/s
Gemini 2.5 Pro 46 tok/s Pro
GPT-5 Medium 27 tok/s Pro
GPT-5 High 30 tok/s Pro
GPT-4o 93 tok/s Pro
Kimi K2 207 tok/s Pro
GPT OSS 120B 460 tok/s Pro
Claude Sonnet 4.5 36 tok/s Pro
2000 character limit reached

Double-heavy axial-vector tetraquark $T_{bc;\bar{u}\bar{d}}^{0}$ (1905.07591v4)

Published 18 May 2019 in hep-ph, hep-ex, and hep-lat

Abstract: The mass and coupling of the axial-vector tetraquark $T_{bc;\bar{u}\bar{d} }{0}$ (in a short form $T_{bc}{0}$) are calculated by means of the QCD two-point sum rule method. In computations we take into account contributions arising from various quark, gluon and mixed vacuum condensates up to dimension 10. The central value of the mass $m=(7105 \pm 155)~\mathrm{ MeV}$ lies below the thresholds for the strong and electromagnetic decays of $T_{bc}{0}$ state, and hence it transforms to conventional mesons only through the weak decays. In the case of $m=7260~\mathrm{MeV}$ the tetraquark $T_{bc}{0}$ becomes the strong- and electromagnetic-interaction unstable particle. In the first case, we find the full width and mean lifetime of $ T_{bc}{0}$ using its dominant semileptonic decays $T_{bc}{0}\to T_{cc;\bar{ u}\bar{d}}{+}l\overline{\nu }{l}$ ($l=e,\ \mu, \tau$), where the final-state tetraquark is a scalar state. We compute also partial widths of the nonleptonic weak decays $T{bc}{0}\to T_{cc;\bar{u}\bar{d} }{+}\pi{-}(K{-}, D{-}, D_{s}{-})$, and take into account their effects on the full width of $T_{bc}{0}$. In the context of the second scenario we calculate partial widths of $S$-wave strong decays $T_{bc}{0}\to B{\ast -}D{+}$ and $T_{bc}{0}\to \overline{B}{\ast 0}D{0}$, and using these channels evaluate the full width of $T_{bc}{0}$. Predictions for $\Gamma_{ \mathrm{full}} =(3.98\pm 0.51)\times 10{-10}~\mathrm{MeV}$ and mean lifetime $\tau=1.65_{-0.18}{+0.25}~\mathrm{ps}$ of $T_{bc}{0}$ obtained in the context of the first option, as well as the full width $\Gamma_{\mathrm{ full}}=(63.5\pm 8.9)~\mathrm{MeV}$ extracted in the second scenario may be useful for experimental and theoretical exploration of double-heavy exotic mesons.

Summary

We haven't generated a summary for this paper yet.

Lightbulb Streamline Icon: https://streamlinehq.com

Continue Learning

We haven't generated follow-up questions for this paper yet.

List To Do Tasks Checklist Streamline Icon: https://streamlinehq.com

Collections

Sign up for free to add this paper to one or more collections.