Effective Higgs potential in Next-to-Minimal Supersymmetric Standard Model
Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, no. 2 (2013), pp. 233-242.

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Higgs sector of the Next-to-Minimal Sypersymmetric Model with CP violation in superpotential and in in the soft supersymmetry breaking sector is considered. One-loop corrections to effective potential parameters were calculated and incorporated to the evaluation of neutral Higgs bosons masses.
Keywords: Higgs sector, nonminimal supersymmetric model, effective Higgs potential.
Mots-clés : Higgs bosons masses
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T. V. Volkova; M. V. Dolgopolov; M. N. Dubinin; E. N. Rykova. Effective Higgs potential in Next-to-Minimal Supersymmetric Standard Model. Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, no. 2 (2013), pp. 233-242. http://geodesic.mathdoc.fr/item/VSGTU_2013_2_a27/

[1] H. P. Nilles, M. Srednicki, D. Wyler, “Weak interaction breakdown induced by supergravity”, Phys. Lett. B, 120:4–6 (1983), 346–348 | DOI

[2] J. M. Frère, D. R. T. Jones, S. Raby, “Fermion masses and induction of the weak scale by supergravity”, Nucl. Phys. B, 222:1 (1983), 11–19 | DOI

[3] J. P. Derendinger, C. A. Savoy, “Quantum effects and $\rm SU(2) \times U(1)$ breaking in supergravity gauge theories”, Nucl. Phys. B, 237:2 (1984), 307–328 | DOI

[4] J. R. Ellis, J. F. Gunion, H. E. Haber, L. Roszkowski, F. Zwirner, “Higgs bosons in a nonminimal supersymmetric model”, Phys. Rev. D, 39:3 (1989), 844–869 | DOI

[5] M. Drees, “Supersymmetric models with extended Higgs sector”, Int. J. Mod. Phys. A, 4:14 (1989), 3635–3651 | DOI

[6] U. Ellwanger, M. Rausch de Traubenberg, C. A. Savoy, “Particle spectrum in supersymmetric models with a gauge singlet”, Phys. Lett. B, 315:3–4 (1993), 331–337, arXiv: hep-ph/9307322 | DOI

[7] U. Ellwanger, M. Rausch de Traubenberg, C. A. Savoy, “Phenomenology of supersymmetric models with a singlet”, Nucl. Phys. B, 492:1 (1997), 21–50, arXiv: hep-ph/9611251 | DOI | Zbl

[8] S. F. King, P. L. White, “Resolving the constrained minimal and next-to-minimal supersymmetric standard models”, Phys. Rev. D, 52:7 (1995), 4183–4216, arXiv: hep-ph/9505326 | DOI

[9] J. E. Kim, H. P. Nilles, “The $\mu$-problem and the strong CP-problem”, Phys. Lett. B, 138:1–3 (1984), 150–154 | DOI

[10] G. F. Giudice, A. Masiero, “A natural solution to the $\mu$-problem in supergravity theories”, Phys. Lett. B, 206:3 (1988), 480–484 | DOI

[11] J. E. Kim, H. P. Nilles, “Gaugino condensation and the cosmological implications of the hidden sector”, Phys. Lett. B, 263:1 (1991), 79–85 | DOI

[12] E. J. Chun, J. E. Kim, H. P. Nilles, “A natural solution of the $\mu$ problem with a composite axion in the hidden sector”, Nucl. Phys. B, 370:1 (1992), 105–122 | DOI

[13] J.A. Casas and C. Muñoz, “A natural solution to the $\mu$ problem”, Phys. Lett. B, 306:3–4 (1993), 288–294, arXiv: hep-ph/9302227 | DOI

[14] G. Lopes Cardoso, D. Lüst, T. Mohaupt, “Moduli spaces and target space duality symmetries in $(0, 2)\; Z_N$ orbifold theories with continuous Wilson lines”, Nucl. Phys. B, 432:1–2 (1994), 68–108, arXiv: hep-th/9405002 | Zbl

[15] I. Antoniadis, E. Gava, K. S. Narain, T. R. Taylor, “Effective $\mu$-term in superstring theory”, Nucl. Phys. B, 432:1–2 (1994), 187–204, arXiv: hep-th/9405024 | DOI | Zbl

[16] A. Brignole, L. E. Ibáñez, C. Muñoz, “Orbifold-induced $\mu$ term and electroweak symmetry breaking”, Phys. Lett. B, 387:4 (1996), 769–774, arXiv: hep-ph/9607405 | DOI

[17] K. Choi, J. S. Lee, C. Muñoz, “Supergravity radiative effects on soft terms and the $\mu$ term”, Phys. Rev. Lett., 1998, no. 80, 3686–3689, arXiv: hep-ph/9709250 | DOI

[18] R. D. Peccei, H. R. Quinn, “CP conservation in the presence of pseudoparticles”, Phys. Rev. Lett., 1977, no. 38, 1440–1443 | DOI

[19] M. Bastero-Gil, C. Hugonie, S. F. King, D. P. Roy, S. Vempati, “Does LEP prefer the NMSSM?”, Phys. Lett. B, 489:3–4 (2000), 359–366, arXiv: hep-ph/0006198 | DOI

[20] S. A. Abel, S. Sarkar, P. L. White, “On the cosmological domain wall problem for the minimally extended supersymmetric standard model”, Nucl. Phys. B, 454:3 (1995), 663–681, arXiv: hep-ph/9506359 | DOI

[21] C. Panagiotakopoulos, K. Tamvakis, “Stabilized NMSSM without domain walls”, Phys. Lett. B, 446:3–4 (1999), 224–227, arXiv: hep-ph/9809475 | DOI

[22] S. A. Abel, “Destabilising divergences in the NMSSM”, Nucl. Phys. B, 480:1–2 (1996), 55–72, arXiv: hep-ph/9609323 | DOI

[23] J. Bagger, E. Poppitz, L. Randall, “Destabilizing divergences in supergravity theories at two loops”, Nucl. Phys. B, 455:1–2 (1995), 59–82, arXiv: hep-ph/9505244 | DOI | Zbl

[24] J. Bagger, E. Poppitz, “Destabilizing divergences in supergravity coupled supersymmetric theories”, Phys. Rev. Lett., 71:15 (1993), 2380–2382, arXiv: hep-ph/9307317 | DOI

[25] H. P. Nilles, M. Srednicki, D. Wyler, “Constraints on the stability of mass hierarchies in supergravity”, Phys. Lett. B, 124:5 (1983), 337–340 | DOI

[26] U. Ellwanger, “Nonrenormalizable interactions from supergravity, quantum corrections and effective low-energy theories”, Phys. Lett. B, 133:3–4 (1983), 187–191 | DOI

[27] U. Ellwanger, C. Hugonie, “Topologies of the $\rm(M+1)$SSM with a singlino LSP at LEP2”, Eur. Phys. J. C, 13:4 (2000), 681–690, arXiv: hep-ph/9812427 | DOI

[28] U. Ellwanger, C. Hugonie, “Masses and couplings of the lightest Higgs bosons in the ${\rm(M+1)}$SSM”, Eur. Phys. J. C, 25:2 (2002), 297–305, arXiv: hep-ph/9909260 | DOI

[29] U. Ellwanger, J. F. Gunion, C. Hugonie, “NMHDECAY: A Fortran Code for the Higgs Masses, Couplings and Decay Widths in the NMSSM”, JHEP, 2005:02 (2005), 066, arXiv: hep-ph/0406215 | DOI

[30] U. Ellwanger, J. F. Gunion, C. Hugonie, S. Moretti, NMSSM Higgs discovery at the LHC, arXiv: hep-ph/0401228

[31] J. Ellis, J. F. Gunion, H. E. Haber, L. Roszkowski, F. Zwirner, “Higgs bosons in a nonminimal supersymmetric model”, Phys. Rev. D, 39:3 (1989), 844–869 | DOI

[32] E. N. Akhmetzyanova, M. V. Dolgopolov, M. N. Dubinin, “Higgs bosons in the two-doublet model involving CP violation”, Phys. Atomic Nuclei, 68:11 (2005), 1851–1865 | DOI

[33] E. N. Akhmetzyanova, M. V. Dolgopolov, M. N. Dubinin, “Violation of CP invariance in the two-doublet higgs sector of the MSSM”, Phys. Part. Nuclei, 37:5 (2006), 677–734 | DOI

[34] E. N. Akhmetzyanova, M. V. Dolgopolov, M. N. Dubinin,, “Higgs bosons in the two-doublet model with CP violation”, Phys. Rev. D, 71:7 (2005), 075008, 24 pp., arXiv: hep-ph/0405264 | DOI

[35] M. Dolgopolov, M. Dubinin, I. Erofeev, E. Rykova, Threshold corrections to the MSSM effective Higgs potential: gaugino and higgsino contributions, PoS(QFTHEP2011)068

[36] M. Maniatis, “The next-to-minimal supersymmetric extension of the standard model reviewed”, Int. J. Mod. Phys. A, 25:18n19 (2010), 3505–3602 | DOI | Zbl

[37] A. O. Borisov, M. V. Dolgopolov, E. N. Rykova, M. N. Dubinin, “Analytic expressions for threshold corrections to the finite-temperature higgs potential in the minimal supersymmetric standard model”, Phys. Atomic Nuclei, 72:1 (2009), 167–172 | DOI

[38] A. O. Borisov, M. V. Dolgopolov, “One-loop wave-function renormalization corrections in the scalar sector of the Minimal Supersymmetric Standard Model”, Phys. Atomic Nuclei, 73:6 (2010), 1093–1096 | DOI

[39] M. Dolgopolov, M. Dubinin, E. Rykova, “Threshold corrections to the MSSM finite-temperature Higgs potential”, J. Mod. Phys., 2 (2011), 301–322, arXiv: [hep-ph] 0901.0524 | DOI