2018
DOI: 10.1140/epjp/i2018-12111-2
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Mass spectra and decay properties of $ \Sigma_{{b}}^{}$ Σ b and $ \Lambda_{{b}}^{}$

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Cited by 15 publications
(12 citation statements)
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“…Especially, the masses of the P-wave Σ b states with J P ¼ 3=2 − and J P ¼ 5=2 − have been calculated in Refs. [12][13][14][15][16][17][18][19][20]25], where the results were given in the range 6.08-6.18 GeV. Considering the intrinsic uncertainties of models, the results from these works do not contradict our suggested assignment of Σ b ð6097Þ.…”
Section: The 1p Bottom Baryon State Assignment To the σ B ð6097þ mentioning
confidence: 70%
See 1 more Smart Citation
“…Especially, the masses of the P-wave Σ b states with J P ¼ 3=2 − and J P ¼ 5=2 − have been calculated in Refs. [12][13][14][15][16][17][18][19][20]25], where the results were given in the range 6.08-6.18 GeV. Considering the intrinsic uncertainties of models, the results from these works do not contradict our suggested assignment of Σ b ð6097Þ.…”
Section: The 1p Bottom Baryon State Assignment To the σ B ð6097þ mentioning
confidence: 70%
“…Until now, many theoretical groups have paid attention to the mass spectrum of excited bottomed baryons. Among them, the nonrelativistic quark model [12][13][14][15], the QCDmotivated relativistic quark model [16], the QCD motivated hypercentral quark model [17], the relativized quark model with chromodynamics [18], the Regge phenomenology [19], the Faddeev method [20,21], the relativistic flux tube model [22], the QCD sum rule [23,24], and other methods [10,25] were used. Especially, the masses of the P-wave Σ b states with J P ¼ 3=2 − and J P ¼ 5=2 − have been calculated in Refs.…”
Section: The 1p Bottom Baryon State Assignment To the σ B ð6097þ mentioning
confidence: 99%
“…We can obtain the magnetic moments of different transitions by sandwiching i µ i σ i between the appropriate 3/2 + and 1/2 + baryon wave functions. The transition magnetic moments for 3 2 + → 1 2 + are computed as [29,30]…”
Section: The Spectrum and Electromagnetic Transitionsmentioning
confidence: 99%
“…Here m 1 , m 2 , and m 3 are the constituent quark masses. Instead of ρ and λ , one can introduce hyperspherical coordinates [7][8][9] which are given by the angles Ω ρ = (θ ρ , ϕ ρ ) and Ω λ = (θ λ , φ λ ), respectively, together with the hyperradius x and the hyperangle ζ , defined by…”
Section: Three-body Schrödinger Equation As a Potential Model Of Baryonsmentioning
confidence: 99%