https://doi.org/10.1140/epjc/s10052-018-5926-6
Regular Article - Theoretical Physics
Holographic three flavor baryon in the Witten–Sakai–Sugimoto model with the D0–D4 background
1
Department of Physics, Shanghai University, Shanghai, 200444, China
2
Department of Physics, Center for Field Theory and Particle Physics, Fudan University, Shanghai, 200433, China
* e-mail: siwenli@fudan.edu.cn
Received:
15
March
2018
Accepted:
23
May
2018
Published online:
4
June
2018
With the construction of the Witten–Sakai–Sugimoto model in the D0–D4 background, we systematically investigate the holographic baryon spectrum in the case of three flavors. The background geometry in this model is holographically dual to Yang–Mills theory in large
limit involving an excited state with a nonzero
angle or glue condensate
, which is proportional to the charge density of the smeared D0-branes through a parameter b or
. The classical solution of baryon in this model can be modified by embedding the Belavin–Polyakov–Schwarz–Tyupkin instanton and we carry out the quantization of the collective modes with this solution. Then we extend the analysis to include the heavy flavor and find that the heavy meson is always bound in the form of the zero mode of the flavor instanton in strong coupling limit. The mass spectrum of heavy-light baryons in the situation with single- and double-heavy baryon is derived by solving the eigen equation of the quantized collective Hamiltonian. Afterwards we obtain that the constraint of stable baryon states has to be
and the difference in the baryon spectrum becomes smaller as the D0 charge increases. It indicates that quarks or mesons can not form stable baryons if the
angle or glue condensate is sufficiently large. Our work is an extension of the previous study of this model and also agrees with those conclusions.
© The Author(s), 2018