Browsing by Author Phung Van Dong

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Showing results [9 - 12] / 12
  • Authors: Cao, H. Nam; Duong, Van Loi; Le, Xuan Thuy; Phung, Van Dong;  Advisor: -;  Co-Author: - (2020)

    It is shown that for a higher weak isospin symmetry, SU(P)L with P≥3, the baryon minus lepton charge B−L neither commutes nor closes algebraically with SU(P)L similar to the electric charge Q, which all lead to a SU(3)C⊗SU(P)L⊗U(1)X⊗U(1)N gauge completion, where X and N determine Q and B−L, respectively. As a direct result, the neutrinos obtain appropriate masses via a canonical seesaw. While the version with P=3 supplies the schemes of single-component dark matter well established in the literature, we prove in this work that the models with P≥4 provide the novel scenarios of multicomponent dark matter, which contain simultaneously at least P−2 stable candidates, respectively. In thi...
  • Authors: Duong Van, Loi; Phung Van, Dong; Dang Van, Soa;  Advisor: -;  Co-Author: - (2020)

    We argue that neutrino mass and dark matter can arise from an approximate B − L symmetry. This idea can be realized in a minimal setup of the flipped 3-3-1 model, which discriminates lepton families while keeping universal quark families and uses only two scalar triplets in order for symmetry breaking and mass generation. This proposal contains naturally an approximate non-Abelian B − L symmetry which consequently leads to an approximate matter parity. The approximate symmetries produce small neutrino masses in terms of type II and III seesaws and may make dark matter long lived. Additionally, dark matter candidate is either unified with the Higgs doublet by gauge symmetry or acted as...
  • Authors: Phung Van Dong; Duong Van Loi; Le Duc Thien; Pham Ngoc Thu;  Advisor: -;  Co-Author: - (2021)

    It is shown that the presence of a vector doublet is suitable to address neutrino mass, dark matter, and the recent muon anomalous magnetic moment.