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Low-lying baryon masses using N_f=2 twisted mass clover-improved fermions directly at the physical point

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arxiv 1704.02647 v2 pith:C4F6FRBH submitted 2017-04-09 hep-lat

Low-lying baryon masses using N_f=2 twisted mass clover-improved fermions directly at the physical point

classification hep-lat
keywords masscharmedmassestwistedbaryonsclover-improveddetermineddoubly
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The masses of the low-lying baryons are evaluated using an ensemble with two degenerate light twisted mass clover-improved quarks with mass tuned to reproduce the physical pion mass. The Iwasaki improved gluonic action is employed. The coupling constant value corresponds to a lattice spacing of $a=0.0938(3)(2)$ fm, determined from the nucleon mass. We find that the clover term supresses isospin symmetry breaking as compared to our previous results using $N_f=2+1+1$ twisted mass fermions. The masses of the hyperons and charmed baryons evaluated using this ensemble are in agreement with the experimental values. We provide predictions for the mass of the doubly charmed $\Xi_{cc}^*$, as well as of the doubly and triply charmed $\Omega$s that have not yet been determined experimentally.

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  1. Mass spectrum, magnetic moments and Regge trajectories of $\Omega_{ccb}$ and $\Omega_{cbb}$ baryons in the nonrelativistic quark--diquark model

    hep-ph 2026-04 unverdicted novelty 4.0

    In a nonrelativistic quark-diquark model fitted to B_c meson data, the authors predict ground-state masses of ~8.0 GeV for Ω_ccb and ~11.0 GeV for Ω_cbb along with magnetic moments and Regge trajectories for different...