2009Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fieldsOpen access

Bottom baryons from a dynamical lattice QCD simulation

Randy Lewis, Richard M. Woloshyn

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Abstract

Bottom baryon masses are calculated based on a $2+1$ flavor dynamical lattice QCD simulation. The gauge field configurations were computed by the CP-PACS and JLQCD collaborations using an improved clover action. The bottom quark is described using lattice NRQCD. Results are presented for single and double-$b$ baryons at one lattice spacing. Comparison with experimental values is discussed.

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Bottom baryon masses are calculated based on a $2+1$ flavor dynamical lattice QCD simulation. The gauge field configurations were computed by the CP-PACS and JLQCD collaborations using an improved clover action. The bottom quark is described using lattice NRQCD. Results are presented for single and double-$b$ baryons at one lattice spacing. Comparison with experimental values is discussed.

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Available abstract

Bottom baryon masses are calculated based on a $2+1$ flavor dynamical lattice QCD simulation. The gauge field configurations were computed by the CP-PACS and JLQCD collaborations using an improved clover action. The bottom quark is described using lattice NRQCD. Results are presented for single and double-$b$ baryons at one lattice spacing. Comparison with experimental values is discussed.

Key concepts: Baryon, Lattice QCD, Physics, Particle physics, Lattice (music), Lattice field theory, Lattice gauge theory, Quantum chromodynamics

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