Publications

2024
Ellis, J., Olive, K.A. & Spanos, V.C., 2024. Non-universal SUSY models, $g_\mu-2$, $m_H$ and dark matter. arXiv [hep-ph]. Website
2023
Ellis, J., et al., 2023. The CMSSM survives Planck, the LHC, LUX-ZEPLIN, Fermi-LAT, H.E.S.S. and IceCube . Eur. Phys. J. C, 83(3), pp.246. Website
Dalianis, I., et al., 2023. Freeze-in baryogenesis and early matter domination. Phys. Rev. D, 108(5), pp.055038. Website
Spanos, V.C. & Stamou, I.D., 2023. {Gravitational waves from no-scale supergravity}. Eur. Phys. J. C, 83, pp.4.
2022
Goudelis, A., Papachristou, P. & Spanos, V.C., 2022. Mechanism for baryogenesis via feebly interacting massive particles. Phys. Rev. D, 105(4), pp.043521. Website
Mavromatos, N.E., Spanos, V.C. & Stamou, I.D., 2022. Primordial black holes and gravitational waves in multiaxion-Chern-Simons inflation . Phys. Rev. D, 106(6), pp.063532. Website
Goudelis, A., et al., 2022. Ultraviolet freeze-in baryogenesis. Phys. Rev. D, 106(2), pp.023515. Website
Goudelis, A., Papachristou, P. & Spanos, V.C., 2022. {Mechanism for baryogenesis via feebly interacting massive particles}. Phys. Rev. D, 105, pp.043521.
Mavromatos, N.E., Spanos, V.C. & Stamou, I.D., 2022. {Primordial black holes and gravitational waves in multiaxion-Chern-Simons inflation}. Phys. Rev. D, 106, pp.063532.
Goudelis, A., et al., 2022. {Ultraviolet freeze-in baryogenesis}. Phys. Rev. D, 106, pp.023515.
2021
Eberl, H., Gialamas, I.D. & Spanos, V.C., 2021. Gravitino thermal production revisited. Phys. Rev. D, 103(7), pp.075025. Website
Gialamas, I.D., et al., 2021. Scale-invariance, dynamically induced Planck scale and inflation in the Palatini formulation . J. Phys. Conf. Ser., 2105(1), pp.012005. Website
Gialamas, I.D., et al., 2021. Scale-invariant quadratic gravity and inflation in the Palatini formalism. Phys. Rev. D, 104(2), pp.023521. Website
Spanos, V.C. & Stamou, I.D., 2021. Gravitational waves and primordial black holes from supersymmetric hybrid inflation . Phys. Rev. D, 104(12), pp.123537. Website
Eberl, H., Gialamas, I.D. & Spanos, V.C., 2021. Gravitino Thermal Production. Beyond Standard Model: From Theory to Experiment. Website
Gialamas, I.D., et al., 2021. {Scale-invariant quadratic gravity and inflation in the Palatini formalism}. Phys. Rev. D, 104, pp.023521.
Spanos, V.C. & Stamou, I.D., 2021. {Gravitational waves and primordial black holes from supersymmetric hybrid inflation}. Phys. Rev. D, 104, pp.123537.
Gialamas, I.D., et al., 2021. {Scale-invariance, dynamically induced Planck scale and inflation in the Palatini formulation}. J. Phys. Conf. Ser., 2105, pp.012005.
Goudelis, A., Papachristou, P. & Spanos, V.C., 2021. {A mechanism for FIMPy baryogenesis}.
Eberl, H., Gialamas, I.D. & Spanos, V.C., 2021. {Gravitino Thermal Production}. In {Beyond Standard Model: From Theory to Experiment}. 7.
Eberl, H., Gialamas, I.D. & Spanos, V.C., 2021. {Gravitino thermal production revisited}. Phys. Rev. D, 103, pp.075025.
2020
Nanopoulos, D.V., Spanos, V.C. & Stamou, I.D., 2020. Primordial Black Holes from No-Scale Supergravity. Phys. Rev. D, 102(8), pp.083536. Website
Nanopoulos, D.V., Spanos, V.C. & Stamou, I.D., 2020. {Primordial Black Holes from No-Scale Supergravity}. Phys. Rev. D, 102, pp.083536.
2018
Bagnaschi, E. & others, 2018. Likelihood Analysis of the pMSSM11 in Light of LHC 13-TeV Data. Eur. Phys. J. C, 78(3), pp.256. Website
Bagnaschi, E. & others, 2018. {Likelihood Analysis of the pMSSM11 in Light of LHC 13-TeV Data}. Eur. Phys. J. C, 78, pp.256.
2016
Dedes, A., Karamitros, D. & Spanos, V.C., 2016. Effective Theory for Electroweak Doublet Dark Matter. Phys. Rev. D, 94(9), pp.095008. Website
Eberl, H. & Spanos, V.C., 2016. GravitinoPack and decays of supersymmetric metastable particles. Comput. Phys. Commun., 202, pp.310-325. Website
Dedes, A., Karamitros, D. & Spanos, V.C., 2016. {Effective Theory for Electroweak Doublet Dark Matter}. Phys. Rev. D, 94, pp.095008.
Eberl, H. & Spanos, V.C., 2016. {GravitinoPack and decays of supersymmetric metastable particles}. Comput. Phys. Commun., 202, pp.310–325.
Dedes, A., Karamitros, D. & Spanos, V.C., 2016. {Effective Theory for Electroweak Doublet Dark Matter}. Phys. Rev., D94, pp.095008.
2015
Spanos, V.C. & Eberl, H., 2015. GravitinoPack and late decays involving gravitinos. PoS, PLANCK2015, pp.124. Website
Spanos, V.C. & Eberl, H., 2015. {GravitinoPack and late decays involving gravitinos} I. Antoniadis, Leontaris, G. K., & Tamvakis, K., eds. PoS, PLANCK2015, pp.124.
Eberl, H. & Spanos, V.C., 2015. {GravitinoPack and late decays involving gravitinos}. {18th International Conference From the Planck Scale to the Electroweak Scale (Planck 2015) Ioannina, Greece, May 25-29, 2015}, PLANCK2015, pp.124.
2013
Mavromatos, N.E. & Spanos, V.C., 2013. Gravitino properties in a conformal supergravity model. Phys. Rev. D, 87(3), pp.035025. Website
Eberl, H. & Spanos, V.C., 2013. Three-body gravitino decays in the MSSM. JHEP, 08, pp.055. Website
Mavromatos, N.E. & Spanos, V.C., 2013. {Gravitino properties in a conformal supergravity model}. Phys. Rev. D, 87, pp.035025.
Eberl, H. & Spanos, V.C., 2013. {Three-body gravitino decays in the MSSM}. JHEP, 08, pp.055.
Mavromatos, N.E. & Spanos, V.C., 2013. {Gravitino properties in a conformal supergravity model}. Phys.Rev., D87, pp.035025.
Eberl, H. & Spanos, V.C., 2013. {Three-body gravitino decays in the MSSM}. JHEP, 1308, pp.055.
2012
Cyburt, R.H., et al., 2012. Metastable Charged Sparticles and the Cosmological Li7 Problem. JCAP, 12, pp.037. Website
Cyburt, R.H., et al., 2012. {Metastable Charged Sparticles and the Cosmological Li7 Problem}. JCAP, 12, pp.037.
Lahanas, A.B. & Spanos, V.C., 2012. {Dilaton dominance relaxes LHC and cosmological constraints in supersymmetric models}. JHEP, 1206, pp.089.
Cyburt, R.H., et al., 2012. {Metastable Charged Sparticles and the Cosmological Li7 Problem}. JCAP, 1212, pp.037.
2011
Ellis, J., Olive, K.A. & Spanos, V.C., 2011. Galactic-Centre Gamma Rays in CMSSM Dark Matter Scenarios. JCAP, 10, pp.024. Website
Ellis, J., et al., 2011. Neutrino Fluxes from NUHM LSP Annihilations in the Sun. Phys. Rev. D, 83, pp.085023. Website
Ellis, J., Olive, K.A. & Spanos, V.C., 2011. {Galactic-Centre Gamma Rays in CMSSM Dark Matter Scenarios}. JCAP, 10, pp.024.
Ellis, J., et al., 2011. {Neutrino Fluxes from NUHM LSP Annihilations in the Sun}. Phys. Rev. D, 83, pp.085023.
Ellis, J., Olive, K.A. & Spanos, V.C., 2011. {Galactic-Centre Gamma Rays in CMSSM Dark Matter Scenarios}. JCAP, 1110, pp.024.
Ellis, J., et al., 2011. {Neutrino Fluxes from NUHM LSP Annihilations in the Sun}. Phys.Rev., D83, pp.085023.
2010
Ellis, J., et al., 2010. Neutrino Fluxes from CMSSM LSP Annihilations in the Sun. Phys. Rev. D, 81, pp.085004. Website
Ellis, J., et al., 2010. {Neutrino Fluxes from CMSSM LSP Annihilations in the Sun}. Phys. Rev. D, 81, pp.085004.
Ellis, J., et al., 2010. {Neutrino Fluxes from CMSSM LSP Annihilations in the Sun}. Phys.Rev., D81, pp.085004.
2008
Argyrou, M., Lahanas, A.B. & Spanos, V.C., 2008. Refining the predictions of supersymmetric CP-violating models: A Top-down approach . JHEP, 05, pp.026. Website
Argyrou, M., Lahanas, A.B. & Spanos, V.C., 2008. {Refining the predictions of supersymmetric CP-violating models: A Top-down approach}. JHEP, 05, pp.026.
Argyrou, M., Lahanas, A.B. & Spanos, V.C., 2008. {Refining the predictions of supersymmetric CP-violating models: A Top-down approach}. JHEP, 0805, pp.026.
2007
Spanos, V.C., 2007. Gravitino dark matter and light element adundances. 15th International Conference on Supersymmetry and the Unification of Fundamental Interactions (SUSY07) , pp.950-953. Website
Spanos, V.C., 2007. {Gravitino dark matter and light element adundances}. In {15th International Conference on Supersymmetry and the Unification of Fundamental Interactions (SUSY07)}. 10. pp. 950–953.
2005
Ellis, J.R., Olive, K.A. & Spanos, V.C., 2005. On the interpretation of $B_s \to \mu^+ \mu^-$ in the CMSSM. Phys. Lett. B, 624, pp.47-59. Website
Ellis, J.R., et al., 2005. Update on the direct detection of supersymmetric dark matter. Phys. Rev. D, 71, pp.095007. Website
Ellis, J.R., Olive, K.A. & Spanos, V.C., 2005. {On the interpretation of $B_s \to μ^{+} μ^{-}$ in the CMSSM}. Phys. Lett. B, 624, pp.47–59.
Ellis, J.R., et al., 2005. {Update on the direct detection of supersymmetric dark matter}. Phys. Rev. D, 71, pp.095007.
Ellis, J.R., Olive, K.A. & Spanos, V.C., 2005. {On the interpretation of $B_s \to μ^{+} μ^{-}$ in the CMSSM}. Phys.Lett., B624, pp.47-59.
Ellis, J.R., et al., 2005. {Update on the direct detection of supersymmetric dark matter}. Phys.Rev., D71, pp.095007.
2004
Ellis, J.R., et al., 2004. Gravitino dark matter in the CMSSM. Phys. Lett. B, 588, pp.7-16. Website
Ellis, J.R., et al., 2004. High-energy constraints on the direct detection of MSSM neutralinos. Phys. Rev. D, 69, pp.015005. Website
Ellis, J.R., et al., 2004. Likelihood analysis of the CMSSM parameter space. Phys. Rev. D, 69, pp.095004. Website
Spanos, V.C., 2004. Probing patterns of supersymmetry breaking using phenomenological constraints . 11th International Conference on Supersymmetry and the Unification of Fundamental Interactions . Website
Spanos, V.C., 2004. Gravitino dark matter in the constrained MSSM. 12th International Conference on Supersymmetry and Unification of Fundamental Interactions (SUSY 04) , pp.717-720.
Ellis, J.R., et al., 2004. Prospects for sparticle discovery in variants of the MSSM. Phys. Lett. B, 603, pp.51. Website
Ellis, J.R., et al., 2004. Very constrained minimal supersymmetric standard models. Phys. Rev. D, 70, pp.055005. Website
Ellis, J.R., et al., 2004. {High-energy constraints on the direct detection of MSSM neutralinos}. Phys. Rev. D, 69, pp.015005.
Spanos, V.C., 2004. {Gravitino dark matter in the constrained MSSM}. In {12th International Conference on Supersymmetry and Unification of Fundamental Interactions (SUSY 04)}. 6. pp. 717–720.
Spanos, V.C., 2004. {Probing patterns of supersymmetry breaking using phenomenological constraints}. In {11th International Conference on Supersymmetry and the Unification of Fundamental Interactions}. 2.
Ellis, J.R., et al., 2004. {Gravitino dark matter in the CMSSM}. Phys. Lett. B, 588, pp.7–16.
Ellis, J.R., et al., 2004. {Likelihood analysis of the CMSSM parameter space}. Phys. Rev. D, 69, pp.095004.
Ellis, J.R., et al., 2004. {Prospects for sparticle discovery in variants of the MSSM}. Phys. Lett. B, 603, pp.51.
Ellis, J.R., et al., 2004. {Very constrained minimal supersymmetric standard models}. Phys. Rev. D, 70, pp.055005.
Ellis, J.R., et al., 2004. {Gravitino dark matter in the CMSSM}. Phys.Lett., B588, pp.7-16.
Ellis, J.R., et al., 2004. {High-energy constraints on the direct detection of MSSM neutralinos}. Phys.Rev., D69, pp.015005.
Ellis, J.R., et al., 2004. {Likelihood analysis of the CMSSM parameter space}. Phys.Rev., D69, pp.095004.
Ellis, J.R., et al., 2004. {Prospects for sparticle discovery in variants of the MSSM}. Phys.Lett., B603, pp.51.
Ellis, J.R., et al., 2004. {Very constrained minimal supersymmetric standard models}. Phys.Rev., D70, pp.055005.
Spanos, V.C., 2004. {Gravitino dark matter in the constrained MSSM}. , pp.717-720.
2003
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2003. Dark matter, supersymmetry and the g(mu)-2. Nucl. Phys. B Proc. Suppl., 124, pp.159-165. Website
Ellis, J.R., et al., 2003. Phenomenological constraints on patterns of supersymmetry breaking. Phys. Lett. B, 573, pp.162-172. Website
Eberl, H., Majerotto, W. & Spanos, V.C., 2003. Single Higgs boson production at future linear colliders including radiative corrections . Nucl. Phys. B, 657, pp.378-396. Website
Ellis, J.R., et al., 2003. Supersymmetric dark matter in light of WMAP. Phys. Lett. B, 565, pp.176-182. Website
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2003. {Dark matter, supersymmetry and the g(mu)-2} D. B. Cline, ed. Nucl. Phys. B Proc. Suppl., 124, pp.159–165.
Ellis, J.R., et al., 2003. {Phenomenological constraints on patterns of supersymmetry breaking}. Phys. Lett. B, 573, pp.162–172.
Eberl, H., Majerotto, W. & Spanos, V.C., 2003. {Single Higgs boson production at future linear colliders including radiative corrections}. Nucl. Phys. B, 657, pp.378–396.
Ellis, J.R., et al., 2003. {Supersymmetric dark matter in light of WMAP}. Phys. Lett. B, 565, pp.176–182.
Eberl, H., Majerotto, W. & Spanos, V.C., 2003. {Single Higgs boson production at future linear colliders including radiative corrections}. Nucl.Phys., B657, pp.378-396.
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2003. {Dark matter, supersymmetry and the g(mu)-2}. Nucl.Phys.Proc.Suppl., 124, pp.159-165.
Ellis, J.R., et al., 2003. {Phenomenological constraints on patterns of supersymmetry breaking}. Phys.Lett., B573, pp.162-172.
Ellis, J.R., et al., 2003. {Supersymmetric dark matter in light of WMAP}. Phys.Lett., B565, pp.176-182.
2002
Lahanas, A.B. & Spanos, V.C., 2002. Implications of the pseudoscalar Higgs boson in determining the neutralino dark matter . Eur. Phys. J. C, 23, pp.185-190. Website
Eberl, H., Majerotto, W. & Spanos, V.C., 2002. Radiative corrections to single Higgs boson production in e+ e- annihilation . Phys. Lett. B, 538, pp.353-358. Website
Eberl, H., Majerotto, W. & Spanos, V.C., 2002. Radiative corrections to single Higgs boson production in e+ e- annihilation . 10th International Conference on Supersymmetry and Unification of Fundamental Interactions (SUSY02) , pp.807-813. Website
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2002. Supersymmetric dark matter and recent experimental constraints. 5th International UCLA Symposium on Sources and Detection of Dark Matter and Dark Energy in the Universe (DM 2002) , pp.238-245. Website
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2002. Updating the constraints to CMSSM from cosmology and accelerator experiments . Conference on Physics Beyond the Standard Model: Beyond the Desert 02, pp.461-471. Website
Lahanas, A.B. & Spanos, V.C., 2002. {Implications of the pseudoscalar Higgs boson in determining the neutralino dark matter}. Eur. Phys. J. C, 23, pp.185–190.
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2002. {Supersymmetric dark matter and recent experimental constraints}. In {5th International UCLA Symposium on Sources and Detection of Dark Matter and Dark Energy in the Universe (DM 2002)}. 5. pp. 238–245.
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2002. {Updating the constraints to CMSSM from cosmology and accelerator experiments}. In {Conference on Physics Beyond the Standard Model: Beyond the Desert 02}. 11. pp. 461–471.
Eberl, H., Majerotto, W. & Spanos, V.C., 2002. {Radiative corrections to single Higgs boson production in e+ e- annihilation}. In {10th International Conference on Supersymmetry and Unification of Fundamental Interactions (SUSY02)}. 10. pp. 807–813.
Eberl, H., Majerotto, W. & Spanos, V.C., 2002. {Radiative corrections to single Higgs boson production in e+ e- annihilation}. Phys. Lett. B, 538, pp.353–358.
Lahanas, A.B. & Spanos, V.C., 2002. {Implications of the pseudoscalar Higgs boson in determining the neutralino dark matter}. Eur.Phys.J., C23, pp.185-190.
Eberl, H., Majerotto, W. & Spanos, V.C., 2002. {Radiative corrections to single Higgs boson production in e+ e- annihilation}. Phys.Lett., B538, pp.353-358.
Eberl, H., Majerotto, W. & Spanos, V.C., 2002. {Radiative corrections to single Higgs boson production in e+ e- annihilation}. , pp.807-813.
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2002. {Supersymmetric dark matter and recent experimental constraints}. , pp.238-245.
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2002. {Updating the constraints to CMSSM from cosmology and accelerator experiments}. , pp.461-471.
2001
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2001. Combining supersymmetric dark matter with recent accelerator data. 5th International Conference on Particle Physics and the Early Universe. Website
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2001. Dark matter direct searches and the anomalous magnetic moment of muon. Phys. Lett. B, 518, pp.94-100. Website
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2001. Neutralino dark matter elastic scattering in a flat and accelerating universe . Mod. Phys. Lett. A, 16, pp.1229-1242. Website
Katsikatsou, A., et al., 2001. On the radiative corrections to the pseudoscalar Higgs boson mass. Phys. Lett. B, 501, pp.69-77. Website
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2001. {Dark matter direct searches and the anomalous magnetic moment of muon}. Phys. Lett. B, 518, pp.94–100.
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2001. {Neutralino dark matter elastic scattering in a flat and accelerating universe}. Mod. Phys. Lett. A, 16, pp.1229–1242.
Katsikatsou, A., et al., 2001. {On the radiative corrections to the pseudoscalar Higgs boson mass}. Phys. Lett. B, 501, pp.69–77.
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2001. {Combining supersymmetric dark matter with recent accelerator data}. In {5th International Conference on Particle Physics and the Early Universe}. 12.
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2001. {Combining supersymmetric dark matter with recent accelerator data}.
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2001. {Dark matter direct searches and the anomalous magnetic moment of muon}. Phys.Lett., B518, pp.94-100.
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2001. {Neutralino dark matter elastic scattering in a flat and accelerating universe}. Mod.Phys.Lett., A16, pp.1229-1242.
Katsikatsou, A., et al., 2001. {On the radiative corrections to the pseudoscalar Higgs boson mass}. Phys.Lett., B501, pp.69-77.
2000
Lahanas, A.B., Spanos, V.C. & Zarikas, V., 2000. Charge asymmetry in two-Higgs doublet model. Phys. Lett. B, 472, pp.119. Website
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2000. Neutralino relic density in a universe with nonvanishing cosmological constant . Phys. Rev. D, 62, pp.023515. Website
Lahanas, A.B., Spanos, V.C. & Zarikas, V., 2000. {Charge asymmetry in two-Higgs doublet model}. Phys. Lett. B, 472, pp.119.
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2000. {Neutralino relic density in a universe with nonvanishing cosmological constant}. Phys. Rev. D, 62, pp.023515.
Lahanas, A.B., Spanos, V.C. & Zarikas, V., 2000. {Charge asymmetry in two-Higgs doublet model}. Phys.Lett., B472, pp.119.
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 2000. {Neutralino relic density in a universe with nonvanishing cosmological constant}. Phys.Rev., D62, pp.023515.
1999
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 1999. Neutralino relic density with a cosmological constant confronts electroweak precision measurements . Phys. Lett. B, 464, pp.213-222. Website
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 1999. {Neutralino relic density with a cosmological constant confronts electroweak precision measurements}. Phys. Lett. B, 464, pp.213–222.
Lahanas, A.B., Nanopoulos, D.V. & Spanos, V.C., 1999. {Neutralino relic density with a cosmological constant confronts electroweak precision measurements}. Phys.Lett., B464, pp.213-222.
1998
Contogouris, A.P., et al., 1998. Higher order corrections to longitudinally polarized reactions. Nucl. Phys. B Proc. Suppl., 64, pp.117-120. Website
Contogouris, A.P., et al., 1998. {Higher order corrections to longitudinally polarized reactions} S. Narison, ed. Nucl. Phys. B Proc. Suppl., 64, pp.117–120.
Contogouris, A.P., et al., 1998. {Higher order corrections to longitudinally polarized reactions}. Nucl.Phys.Proc.Suppl., 64, pp.117-120.
1997
Lahanas, A.B. & Spanos, V.C., 1997. Supersymmetric QCD corrections to the W boson width. Phys. Lett. B, 391, pp.351-354. Website
Heyssler, M. & Spanos, V.C., 1997. Testing a model with additional vector fermions at the LEP-2 collider. Mod. Phys. Lett. A, 12, pp.393-402. Website
Lahanas, A.B. & Spanos, V.C., 1997. {Supersymmetric QCD corrections to the W boson width}. Phys. Lett. B, 391, pp.351–354.
Heyssler, M. & Spanos, V.C., 1997. {Testing a model with additional vector fermions at the LEP-2 collider}. Mod. Phys. Lett. A, 12, pp.393–402.
Lahanas, A.B. & Spanos, V.C., 1997. {Supersymmetric QCD corrections to the W boson width}. Phys.Lett., B391, pp.351-354.
1996
Spanos, V.C. & Stirling, J.W., 1996. {Constraining a CP violating W W V coupling from the W+ W- threshold cross-section at LEP-2}. Phys. Lett. B, 388, pp.371–375.
Spanos, V.C. & Stirling, J.W., 1996. Constraining a CP violating W W V coupling from the W+ W- threshold cross-section at LEP-2 . Phys. Lett. B, 388, pp.371-375. Website
Argyres, E.N., et al., 1996. Trilinear gauge boson couplings in the MSSM. Phys. Lett. B, 383, pp.63-77. Website
Gounaris, G. & others, 1996. Triple gauge boson couplings. AGS / RHIC Users Annual Meeting. Website
Gounaris, G. & others, 1996. {Triple gauge boson couplings}. In {AGS / RHIC Users Annual Meeting}. 1.
Argyres, E.N., et al., 1996. {Trilinear gauge boson couplings in the MSSM}. Phys. Lett. B, 383, pp.63–77.
Spanos, V.C. & Stirling, J.W., 1996. {Constraining a CP violating W W V coupling from the W+ W- threshold cross-section at LEP-2}. Phys.Lett., B388, pp.371-375.
1995
Lahanas, A.B. & Spanos, V.C., 1995. {Trilinear gauge boson vertices in the MSSM}.
Lahanas, A.B. & Spanos, V.C., 1995. Trilinear gauge boson vertices in the MSSM. Website
Lahanas, A.B. & Spanos, V.C., 1995. {Trilinear gauge boson vertices in the MSSM}.
1994
Christodoulakis, T., et al., 1994. Exact solutions to the Dirac equation for neutrinos propagating in a particular Vaidya background . J. Math. Phys., 35, pp.2430-2437. Website
Lahanas, A.B. & Spanos, V.C., 1994. Static quantities of the W boson in the MSSM. Phys. Lett. B, 334, pp.378-390. Website
Christodoulakis, T., et al., 1994. {Exact solutions to the Dirac equation for neutrinos propagating in a particular Vaidya background}. J. Math. Phys., 35, pp.2430–2437.
Lahanas, A.B. & Spanos, V.C., 1994. {Static quantities of the W boson in the MSSM}. Phys. Lett. B, 334, pp.378–390.
1993
Argyres, E.N., et al., 1993. {One loop corrections to three vector boson vertices in the Standard Model}. Nucl. Phys. B, 391, pp.23–41.
Argyres, E.N., et al., 1993. One loop corrections to three vector boson vertices in the Standard Model. Nucl. Phys. B, 391, pp.23-41. Website
Argyres, E.N., et al., 1993. {One loop corrections to three vector boson vertices in the Standard Model}. Nucl.Phys., B391, pp.23-41.