| 2021 | V. V. Flambaum, I. B. Samsonov, H. B. Tran Tan, A. V. Viatkina: Nuclear polarization effects in atoms and ions. In: Phys. Rev. A, 103, 2021, 032811 |
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| 2021 | V. V. Flambaum, I. B. Samsonov: Radiation from matter-antimatter annihilation in the quark nugget model of dark matter. In: Phys. Rev. D, 104, 2021, 063042 |
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| 2020 | V.V. Flambaum, I.B. Samsonov, H.B. Tran Tan: Effects of CP-violating internucleon interactions in paramagnetic molecules. In: Phys. Rev. D, 102, 2020, 11 |
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| 2020 | V. V. Flambaum and I. B. Samsonov: Electric field on nucleus in solids and interaction of CP-violating nuclear electric dipole moment with phonons. In: Phys. Rev. Research, 2, 2020, 023042 |
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| 2020 | V.V. Flambaum, I.B. Samsonov, H.B. Tran Tan: Limits on CP-violating hadronic interactions and proton EDM from paramagnetic molecules. In: JHEP, 10, 2020, 077 |
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| 2019 | H.B. Tran Tan, V.V. Flambaum, I.B. Samsonov, Y.V. Stadnik, D. Budker: Interference-assisted resonant detection of axions. In: Physics of the Dark Universe, 24, 2019, 100272 |
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| 2019 | I.L. Buchbinder, E.A. Ivanov, I.B. Samsonov: Low-energy effective action in 5D, N=2 supersymmetric gauge theory. In: Nucl. Phys. B, 940, 2019, 54 |
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| 2019 | V.V. Flambaum, I.B. Samsonov: Ultralight dark photon as a model for early universe dark matter. In: Phys. Rev. D, 100, 2019, 063541 |
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| 2018 | V. V. Flambaum, I. B. Samsonov, H. B. Tran Tan, D. Budker: Coherent axion-photon transformations in the forward scattering on atoms. In: Phys. Rev. D, 98, 2018, 095028 |
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| 2018 | V.A. Dzuba, V.V. Flambaum, I.B. Samsonov, Y.V. Stadnik: New constraints on axion-mediated P,T-violating interaction from electric dipole moments of diamagnetic atoms. In: Phys. Rev. D, 98, 2018, 035048 |
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| 2018 | V.V. Flambaum, H. B. Tran Tan, I.B. Samsonov, Y. V. Stadnik, D. Budker: Resonant detection and production of axions with atoms. In: Int. J. Mod. Phys. A, 33, 2018, 1844030 |
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| 2018 | V.V. Flambaum, I.B. Samsonov: Resonant enhancement of an oscillating electric field in an atom. In: Phys. Rev. A, 98, 2018, 053437 |
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| 2017 | S.M. Kuzenko, J. Novak, I.B. Samsonov: Chiral anomalies in six dimensions from harmonic superspace. In: JHEP, 11, 2017, 145 |
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| 2017 | I.B. Samsonov: Low-energy effective action in two-dimensional SQED: A two-loop analysis. In: JHEP, 07, 2017, 146 |
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| 2017 | I.L. Buchbinder, E.A. Ivanov, I.B. Samsonov: The low-energy N=4 SYM effective action in diverse harmonic superspaces. In: Phys. Part. Nucl., 48, 2017, 333 |
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| 2016 | S.M. Kuzenko, I.B. Samsonov: Implications of N=5, 6 superconformal symmetry in three spacetime dimensions, . In: JHEP, 08, 2016, 084 |
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| 2016 | S.M. Kuzenko, J. Novak, I.B. Samsonov: The anomalous current multiplet in 6D minimal supersymmetry. In: JHEP, 02, 2016, 132 |
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| 2015 | E.I. Buchbinder, S.M. Kuzenko, I.B. Samsonov: Implications of N=4 superconformal symmetry in three spacetime dimensions. In: JHEP, 08, 2015, 125 |
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| 2015 | S.M. Kuzenko, I.B. Samsonov: Superconformal Chern-Simons-matter theories in N=4 superspace. In: Phys. Rev. D, 92, 2015, 105007 |
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| 2015 | E.I. Buchbinder, S.M. Kuzenko, I.B. Samsonov: Superconformal field theory in three dimensions: Correlation functions of conserved currents. In: JHEP, 06, 2015, 138 |
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| 2014 | I.B. Samsonov, D. Sorokin: Gauge and matter superfield theories on S2. In: JHEP, 09, 2014, 097 |
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| 2014 | I.B. Samsonov, D. Sorokin: Superfield theories on S3 and their localization. In: JHEP, 04, 2014, 102 |
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| 2014 | I.L. Buchbinder, B.S. Merzlikin, I.B. Samsonov: Two-loop low-energy effective action in Abelian supersymmetric Chern-Simons matter models. In: Nucl. Phys. B, 881, 2014, 42 |
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| 2013 | I.L. Buchbinder, N.G. Pletnev, I.B. Samsonov: Background field formalism and construction of effective action for N=2, d=3 supersymmetric gauge theories. In: Physics of Particles and Nuclei, 44, 2013, 234 |
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| 2013 | I.L. Buchbinder, B.S. Merzlikin, I.B. Samsonov: Two-loop low-energy effective actions in N=2 and N=4 three-dimensional SQED. In: JHEP, 07, 2013, 012 |
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| 2012 | I.B. Samsonov: N= 4 SYM Low-Energy Effective Action in N=4 Harmonic Superspace. In: Physics of Particles and Nuclei, 43, 2012, 649 |
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| 2012 | I.L. Buchbinder, E.A. Ivanov, I.B. Samsonov, B.M. Zupnik: Superconformal N=3 SYM Low-Energy Effective Action. In: JHEP, 01, 2012, 001 |
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| 2012 | I.L. Buchbinder, B.S. Merzlikin, I.B. Samsonov: Two-loop effective potentials in general N=2, d=3 chiral superfield model. In: Nucl. Phys. B, 860, 2012, 87 |
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| 2011 | P. Pasti, I. Samsonov, D. Sorokin, M. Tonin: BLG and M5. In: Physics of Particles and Nuclei Letters, 8, 2011, 209 |
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| 2011 | D.V. Belyaev, I.B. Samsonov: Bi-harmonic superspace for N=4 d=4 super Yang-Mills. In: JHEP, 09, 2011, 056 |
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| 2011 | D.V. Belyaev, I.B. Samsonov: Bi-harmonic superspace for N=4 d=4 super Yang-Mills. In: JHEP, 09, 2011, 056 |
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| 2011 | I.L. Buchbinder, N.G. Pletnev, I.B. Samsonov: Low-energy effective actions in three-dimensional extended SYM theories. In: JHEP, 01, 2011, 121 |
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| 2011 | D.V. Belyaev, I.B. Samsonov: Wess-Zumino term in the N=4 SYM effective action revisited. In: JHEP, 04, 2011, 112 |
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| 2010 | I.L. Buchbinder, N.G. Pletnev, I.B. Samsonov: Effective action of three-dimensional extended supersymmetric matter on gauge superfield background. In: JHEP, 04, 2010, 124 |
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| 2009 | Ioseph Buchbinder, Evgeny Ivanov, Olaf Lechtenfeld, Nikolay Pletnev, Igor Samsonov, Boris Zupnik: ABJM models in N=3 harmonic superspace. In: Journal of High Energy Physics, 2009, 096 |
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| 2009 | P. Pasti, I. Samsonov, D. Sorokin, M. Tonin: Bagger-Lambert-Gustavsson-motivated Lagrangian formulation for the chiral two-form gauge field in D=6 and M5-branes. In: Phys. Rev. D, 80, 2009, 086008 |
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| 2009 | Ioseph Buchbinder, Evgeny Ivanov, Olaf Lechtenfeld, Nikolay Pletnev, Igor Samsonov, Boris Zupnik: Quantum N=3, d=3 Chern-Simons matter theories in harmonic superspace. In: Journal of High Energy Physics, 2009, 075 |
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| 2008 | I.L. Buchbinder, I.B. Samsonov: N=3 superparticle model. In: Nuclear Physics, 2008, 180-207 |
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| 2008 | I.L. Buchbinder, O. Lechtenfeld, I.B. Samsonov: N=4 superparticle and super-Yang-Mills theory in USp(4) harmonic superspace. In: Nuclear Physics, 2008, 208-246 |
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