访问教授 亚历山大·莫洛奇科夫

亚历山大·莫洛奇科夫

访问教授
单位: Far Eastern Federal University
研究方向: 数学物理
办公室: A6-106
邮箱: molochkov.alexander@gmail.com

个人简介

出版物

  • [1] MN Chernodub, VA Goy, AV Molochkov, DV Stepanov, AS Pochinok, Weakening of the Color Deconfinement Phase Transition in an External Gravitational Field, Physics of Atomic Nuclei, 88(6), 1222-1228 (2026)
  • [2] MN Chernodub, VA Goy, AV Molochkov, AS Tanashkin, One-quark state near a boundary of the confinement phase of QCD, Physical Review D, 113(3), 034512 (2026)
  • [3] MN Chernodub, VA Goy, AV Molochkov, Acoustic phonons in a magnetized vacuum? First-principle lattice results on the mass spectrum of the electroweak model in a strong magnetic field (2026)
  • [4] J Dai, A Molochkov, AJ Niemi, J Westerholm, Non-Abelian Geometric Phases in Triangular Structures And Universal SU (2) Control in Shape Space (2025)
  • [5] MN Chernodub, VA Goy, AV Molochkov, KR Pak, AS Tanashkin, The Casimir Effect in (3+ 1)-dimensional lattice Yang-Mills theory at finite temperature: the unexpected universality of quarkiton and glueton boundary states, POS Sissa, QCHSC24, 036 (2025)
  • [6] A.M.Begun, M.N.Chernodub, V.A.Goy, A.V.Molochkov, Vortex wall phase in fractonic XY-plaquette model on square lattice, Physical Review B, 112, 035411 (2025)
  • [7] SD Liubimov, NV Gerasimeniuk, AA Korneev, AV Molochkov, Modeling the Structure of Myoglobin within the Abelian Higgs Model, Biochemistry (Moscow), Supplement Series A: Membrane and Cell Biology, 19(4), 449–455 (2025)
  • [8] MN Chernodub, VA Goy, AV Molochkov, DV Stepanov, AS Pochinok, Extreme softening of QCD phase transition under weak acceleration: First-principles Monte Carlo results for gluon plasma, Physical Review Letters, 134(11), 111904 (2025)
  • [9] A.Begun, A.Molochkov, K.Zarembo, A.Zorina, Kosterlitz-Thouless transition in two-dimensional superfluid (2024)
  • [10] M Chernodub, AS Pochinok, A Molochkov, DV Stepanov, V Goy, Gluon matter under weak acceleration: Lattice results, Proceedings of the 8th International Conference on Chirality, Vorticity, and … (2024)
  • [11] A Begun, MN Chernodub, A Molochkov, AJ Niemi, Local topology and perestroikas in protein structure and folding dynamics, Physical Review E, 111(2), 024406 (2024)
  • [12] M Chernodub, V Goy, A Molochkov, Generation of Electric Current by Magnetic Field at the Boundary: Quantum Scale Anomaly Versus Semiclassical Meissner Current Outside of the Conformal Limit, Advanced Physics Research, 4(7), 2300058 (2023)
  • [13] MN Chernodub, VA Goy, AV Molochkov, AS Tanashkin, Boundary states and non-Abelian Casimir effect in lattice Yang-Mills theory, Physical Review D, 108(1), 014515 (2023)
  • [14] VG Bornyakov, NV Gerasimeniuk, VA Goy, AA Korneev, AV Molochkov, ..., Numerical study of the Roberge-Weiss transition, Physical Review D, 107(1), 014508 (2023)
  • [15] J Garaud, A Korneev, A Samoilenka, A Molochkov, E Babaev, ..., Counterpart of the Chandrasekhar-Kendall state in noncentrosymmetric superconductors, Physical Review B, 108(1), 014504 (2023)
  • [16] RN Rogalev, VG Bornyakov, NV Gerasimeniuk, VA Goy, AA Korneev, ..., Roberge–Weiss transition in the Lee–Yang approach, Physics of Particles and Nuclei Letters, 20(3), 438-442 (2023)
  • [17] N Gerasimeniuk, V Bornyakov, V Goy, R Rogalyov, A Korneev, ..., Lee–Yang Zeroes in the Baryon Fugacity Plane: The Role of High Densities, Particles, 6(3), 834-846 (2023)
  • [18] MN Chernodub, VA Goy, AV Molochkov, Inhomogeneity of a rotating gluon plasma and the Tolman-Ehrenfest law in imaginary time: Lattice results for fast imaginary rotation, Physical Review D, 107(11), 114502 (2023)
  • [19] MN Chernodub, VA Goy, AV Molochkov, Phase structure of electroweak vacuum in a strong magnetic field: The lattice results, Physical Review Letters, 130(11), 111802 (2023)
  • [20] E Babaev, D Kharzeev, M Larsson, A Molochkov, V Zhaunerchyk, Chiral Matter-Proceedings of the Nobel Symposium 167, World Scientific (2023)
  • [21] AS Pochinok, AV Molochkov, MN Chernodub, Ising model on the fibonacci sphere, 2301.06849 (2023)
  • [22] AV Molochkov, Nonperturbative Casimir Effects: Vacuum Structure, Confinement, and Chiral Symmetry Breaking, CHIRAL MATTER: Proceedings of the Nobel Symposium, 167, 59-70 (2023)
  • [23] N Gerasimeniuk, V Bornyakov, V Goy, R Rogalyov, A Korneev, ..., Lee–Yang Zeroes in the Baryon Fugacity Plane: The Role of High Densities. Particles 2023, 6, 834–846 (2023)
  • [24] MN Chernodub, VA Goy, AV Molochkov, AS Tanashkin, Casimir boundaries, monopoles, and deconfinement transition in ( $3+1$ )- dimensional compact electrodynamics, Physical Review D, 105(11), 114506 (2022)
  • [25] A Korneev, A Begun, S Liubimov, K Kachlishvili, A Molochkov, AJ Niemi, ..., Exploring structural flexibility and stability of α-Synuclein by the Landau–Ginzburg–Wilson approach, The Journal of Physical Chemistry B, 126(36), 6878-6890 (2022)
  • [26] N Gerasimeniuk, MN Chernodub, VA Goy, DL Boyda, SD Liubimov, ..., Applying machine learning methods to prediction problems of lattice observables, SciPost Physics Proceedings, 020 (2022)
  • [27] A Begun, M Chernodub, A Molochkov, Vortices in 𝒫𝒯-symmetric non-Hermitian superfluid, EPJ Web of Conferences, 258, 10005 (2022)
  • [28] A Begun, S Liubimov, A Molochkov, AJ Niemi, On topology and knotty entanglement in protein folding, PLoS One, 16(1), e0244547 (2021)
  • [29] AK Sieradzan, A Korneev, A Begun, K Kachlishvili, HA Scheraga, ..., Investigation of phosphorylation-induced folding of an intrinsically disordered protein by coarse-grained molecular dynamics, Journal of chemical theory and computation, 17(5), 3203-3220 (2021)
  • [30] DL Boyda, MN Chernodub, NV Gerasimeniuk, VA Goy, SD Liubimov, ..., Finding the deconfinement temperature in lattice Yang-Mills theories from outside the scaling window with machine learning, Physical Review D, 103(1), 014509 (2021)
  • [31] AM Begun, MN Chernodub, AV Molochkov, Phase diagram and vortex properties of a $PT$ -symmetric non-Hermitian two-component superfluid, Physical Review D, 104(5), 056024 (2021)
  • [32] AM Begun, MN Chernodub, AV Molochkov, Vortices in PT-symmetric non-Hermitian two-component superfluid, arXiv, 2105.07453 (2021)
  • [33] K Kachlishvili, A Korneev, L Maisuradze, J Liu, HA Scheraga, ..., New Insights into Folding, Misfolding, and Nonfolding Dynamics of a WW Domain, The Journal of Physical Chemistry B, 124(19), 3855-3872 (2020)
  • [34] AA Korneev, MN Chernodub, AV Molochkov, MAGNETIC KNOTS IN SUPERCONDUCTORS WITH BROKEN INVERSION SYMMETRY, The 7th annual student scientific conference in English, 123-124 (2020)
  • [35] MN Chernodub, H Erbin, VA Goy, AV Molochkov, Topological defects and confinement with machine learning: The case of monopoles in compact electrodynamics, Physical Review D, 102(5), 054501 (2020)
  • [36] MN Chernodub, H Erbin, IV Grishmanovskii, VA Goy, AV Molochkov, Casimir effect with machine learning, Physical Review Research, 2(3), 033375 (2020)
  • [37] DL Boyda, MN Chernodub, NV Gerasimeniuk, VA Goy, SD Liubimov, ..., Machine-learning physics from unphysics: Finding deconfinement temperature in lattice Yang-Mills theories from outside the scaling window, arXiv, 2009.10971 (2020)
  • [38] NV Gerasimenyuk, AV Molochkov, VG Bornyakov, CALCULATION OF LEE-YANG ZEROS IN LATTICE QCD AT T> TRW, The 7th annual student scientific conference in English, 122-123 (2020)
  • [39] AM Begun, AV Molochkov, AJ Niemi, MODELING OF TOPOLOGY AND DYNAMICS OF KNOTTED PROTEINS, The 7th annual student scientific conference in English, 116-119 (2020)
  • [40] D Boyda, VG Bornyakov, VA Goy, A Molochkov, A Nakamura, Extracting High-Density QCD properties from Heavy Ion-Collisions at J-PARC energy regions, Proceedings of 13th International Conference on Nucleus-Nucleus Collisions (2020)
  • [41] VV Braguta, MN Chernodub, AY Kotov, AV Molochkov, AA Nikolaev, Finite-density QCD transition in a magnetic background field, Physical Review D, 100(11), 114503 (2019)
  • [42] M Wakayama, VG Bornyakov, DL Boyda, VA Goy, H Iida, AV Molochkov, ..., Lee-Yang zeros in lattice QCD for searching phase transition points, Physics Letters B, 793, 227-233 (2019)
  • [43] MN Chernodub, VA Goy, AV Molochkov, Phase structure of lattice Yang-Mills theory on $T2×R2$, Physical Review D, 99(7), 074021 (2019)
  • [44] A Begun, A Molochkov, AJ Niemi, Protein tertiary structure and the myoglobin phase diagram, Scientific Reports, 9(1), 10819 (2019)
  • [45] MN Chernodub, VA Goy, AV Molochkov, Nonperturbative Casimir effects in field theories: aspects of confinement, dynamical mass generation and chiral symmetry breaking, arXiv, 1901.04754 (2019)
  • [46] MN Chernodub, VA Goy, AV Molochkov, Conformal magnetic effect at the edge: a numerical study in scalar QED, Physics Letters B, 789, 556-561 (2019)
  • [47] VG Bornyakov, D Boyda, VA Goy, A Molochkov, A Nakamura, Canonical partition functions in lattice QCD at finite density and temperature, Proceedings of Science, 271-271 (2019)
  • [48] V Bornyakov, D Boyda, V Goy, A Molochkov, A Nakamura, New way of collision experiment data analysis based on Grand Canonical Distribution and Lattice QCD data, arXiv, 1907.12094 (2019)
  • [49] AY Kotov, VV Braguta, MN Chernodub, AA Nikolaev, AV Molochkov, Phase diagram of QCD in (B, T, µ) space from analytical continuation (2019)
  • [50] NV Gerasimenyuk, AV Molochkov, DETECTION OF PHASE TRANSITION VIA NEURAL NETWORK, THE 6TH ANNUAL STUDENT SCIENTIFIC CONFERENCE IN ENGLISH, 154-156 (2019)
  • [51] A Begun, N Gerasimenyuk, A Korneev, A Molochkov, A Niemi, Gauge theory: Protein topology and dynamics, Journal of Bioenergetics and Biomembranes, 50(6), 500-501 (2018)
  • [52] MN Chernodub, VA Goy, AV Molochkov, HH Nguyen, Casimir Effect in Yang-Mills Theory in $D=2+1$, Physical Review Letters, 121(19), 191601 (2018)
  • [53] VG Bornyakov, VV Braguta, EM Ilgenfritz, AY Kotov, AV Molochkov, ..., Observation of deconfinement in a cold dense quark medium, Journal of High Energy Physics, 2018(3), 1-12 (2018)
  • [54] VG Bornyakov, DL Boyda, VA Goy, H Iida, AV Molochkov, A Nakamura, ..., Lattice QCD at finite baryon density using analytic continuation, EPJ Web of Conferences, 182, 02017 (2018)
  • [55] VG Bornyakov, D Boyda, V Goy, A Molochkov, A Nakamura, A Nikolaev, ..., Restoring canonical partition functions from imaginary chemical potential, EPJ Web of Conferences, 175, 07027 (2018)
  • [56] VG Bornyakov, VV Braguta, EM Ilgenfritz, AY Kotov, IE Kudrov, ..., Confinement-deconfinement transition in dense SU (2) QCD, EPJ Web of Conferences, 175, 07009 (2018)
  • [57] VG Bornyakov, D Boyda, V Goy, A Molochkov, A Nakamura, A Nikolaev, ..., Lattice Study of QCD Phase Structure by Canonical Approach, EPJ Web of Conferences, 175, 07033 (2018)
  • [58] MN Chernodub, VA Goy, AV Molochkov, Phase structure of lattice Yang-Mills theory on ${\mathbb T}^2 \times {\mathbb R}^2$, arXiv, 1811.01550 (2018)
  • [59] M Wakayama, V Bornyakov, D Boyda, V Goy, H Iida, A Molochkov, ..., Phase structures of finite density QCD from Lee-Yang zeros in lattice QCD with canonical approach, Bulletin of the American Physical Society, 63 (2018)
  • [60] VA Goy, V Bornyakov, D Boyda, A Molochkov, A Nakamura, A Nikolaev, ..., Sign problem in finite density lattice QCD, Progress of Theoretical and Experimental Physics, 2017(3), 031D01 (2017)
  • [61] VG Bornyakov, DL Boyda, VA Goy, AV Molochkov, A Nakamura, ..., New approach to canonical partition functions computation in $Nf=2$ lattice QCD at finite baryon density, Physical Review D, 95(9), 094506 (2017)
  • [62] MN Chernodub, VA Goy, AV Molochkov, Nonperturbative Casimir effect and monopoles: compact Abelian gauge theory in two spatial dimensions, Physical Review D, 95(7), 074511 (2017)
  • [63] MN Chernodub, VA Goy, AV Molochkov, Casimir effect and deconfinement phase transition, Physical Review D, 96(9), 094507 (2017)
  • [64] A Molochkov, A Begun, A Niemi, Gauge symmetries and structure of proteins, EPJ Web of Conferences, 137, 04004 (2017)
  • [65] VG Bornyakov, DL Boyda, VA Goy, EM Ilgenfritz, BV Martemyanov, ..., Dyons and Roberge-Weiss transition in lattice QCD, EPJ Web of Conferences, 137, 03002 (2017)
  • [66] D Boyda, VG Bornyakov, V Goy, A Molochkov, A Nakamura, A Nikolaev, ..., Lattice QCD thermodynamics at finite chemical potential and its comparison with experiments, arXiv, 1704.03980 (2017)
  • [67] VG Bornyakov, D Boyda, V Goy, A Molochkov, A Nakamura, A Nikolaev, ..., How to use Lattice and experimental data for QCD critical point search, Acta Physica Polonica B Proceedings Supplement, 10(3), 0495 (2017)
  • [68] VG Bornyakov, DL Boyda, VA Goy, AV Molochkov, A Nakamura, ..., Study of lattice QCD at finite chemical potential using the canonical ensemble approach, EPJ Web of Conferences, 138, 02002 (2017)
  • [69] VG Bornyakov, DL Boyda, VA Goy, AV Molochkov, A Nakamura, ..., Study of lattice QCD at finite baryon density using the canonical approach, EPJ Web of Conferences, 137, 07017 (2017)
  • [70] MC Diamantini, D Kharzeev, A Molochkov, T Schäfer, T Sulejmanpašić, Round table: What can we learn about confinement and anoma-lous effects in QCD using analog systems?, EPJ Web of Conferences, 137, 01002 (2017)
  • [71] VA Goy, V Bornyakov, D Boyda, A Molochkov, A Nakamura, A Nikolaev, ..., Progress of Theoretical and Experimental Physics Vol. 2017, No. 3 (2017), 日本物理学会誌, 72(6) (2017)
  • [72] VV Braguta, EM Ilgenfritz, AY Kotov, AV Molochkov, AA Nikolaev, Phase diagram of dense two-color QCD within lattice simulations, EPJ Web of Conferences, 137, 07011 (2017)
  • [73] VV Braguta, EM Ilgenfritz, AY Kotov, AV Molochkov, AA Nikolaev, Study of the phase diagram of dense two-color QCD within lattice simulation, Physical Review D, 94(11), 114510 (2016)
  • [74] MN Chernodub, VA Goy, AV Molochkov, Casimir effect on the lattice: U (1) gauge theory in two spatial dimensions, Physical Review D, 94(9), 094504 (2016)
  • [75] DL Boyda, VG Bornyakov, VA Goy, VI Zakharov, AV Molochkov, ..., Novel approach to deriving the canonical generating functional in lattice QCD at a finite chemical potential, JETP letters, 104(10), 657-661 (2016)
  • [76] V Braguta, MN Chernodub, VA Goy, K Landsteiner, AV Molochkov, ..., Study of axial magnetic effect, AIP Conference Proceedings, 1701(1), 030002 (2016)
  • [77] V Bornyakov, D Boyda, V Goy, A Molochkov, A Nakamura, A Nikolaev, ..., Lattice QCD for Baryon Rich Matter–Beyond Taylor Expansions, Nuclear Physics A, 956, 809-812 (2016)
  • [78] VV Braguta, EM Ilgenfritz, AY Kotov, AV Molochkov, AA Nikolaev, Study of the phase diagram of dense QC2D with Nf= 2 within lattice simulation, PoS, LATTICE2016, 42 (2016)
  • [79] VV Braguta, VA Goy, EM Ilgenfritz, AY Kotov, AV Molochkov, ..., Two-color QCD with non-zero chiral chemical potential, Journal of High Energy Physics, 2015(6), 1-20 (2015)
  • [80] V Braguta, MN Chernodub, VA Goy, K Landsteiner, AV Molochkov, ..., Axial magnetic effect in two-color quenched lattice QCD, Nuclear and Particle Physics Proceedings, 258, 197-200 (2015)
  • [81] VV Braguta, VA Goi, M Ilgenfritz, AY Kotov, AV Molochkov, ..., Study of the phase diagram of(2) quantum chromodynamics with nonzero chirality, JETP letters, 100(9), 547-549 (2015)
  • [82] A Molochkov, VA Goy, Surface operator study in SU (2) gauge field theory, PoS, 360 (2015)
  • [83] VV Braguta, VA Goy, EM Ilgenfritz, AY Kotov, AV Molochkov, ..., Lattice QCD with Chiral Chemical Potential: from SU (2) to SU (3), Proceedings of Science, 185-185 (2015)
  • [84] V Braguta, MN Chernodub, VA Goy, K Landsteiner, AV Molochkov, ..., Temperature dependence of the axial magnetic effect in two-color quenched QCD, Physical Review D, 89(7), 074510 (2014)
  • [85] VV Braguta, VA Goy, EM Ilgenfritz, AY Kotov, AV Molochkov, ..., Two-color QCD with chiral chemical potential, arXiv, 1411.5174 (2014)
  • [86] A Molochkov, V Goy, A Tolstonogov, Field theory model of brain extracellular matrix, Journal of Radiation Research, 55(suppl_1), i99-i99 (2014)
  • [87] VV Braguta, VA Goi, MI Ilgenfritz, AY Kotov, AV Molochkov, ..., Study of the phase diagram of SU (2) quantum chromodynamics with nonzero chirality, Pis' ma v Zhurnal Èksperimental'noi i Teoreticheskoi Fiziki, 100(9), 623-626 (2014)
  • [88] A Molochkov, V Goy, Study of QCD phase using surface operators, Proceedings of the XV International Conference on Hadron Spectroscopy … (2013)
  • [89] A Molochkov, V Goy, PoS (LATTICE 2013) 359 Surface operator study in SU (2) gauge field theory (2013)
  • [90] V Goy, A Molochkov, PoS (Baldin ISHEPP XXI) 025 Witten parameter in the SU (2)-gluodynamics (2012)
  • [91] V Goy, A Molochkov, Witten parameter in pure gauge SU (2) theory, Proceedings of Science (2012)
  • [92] VA Goy, AV Molochkov, WITTEN PARAMETER IN THE SU (2)-GLUEDYNAMICS, Relativistic Nuclear Physics and Quantum Chromodynamics, 54 (2012)
  • [93] A Molochkov, The EMC effect in the few‐body bound states, AIP Conference Proceedings, 1388(1), 451-457 (2011)
  • [94] A Molochkov, SEA-QUARK FLAVOR ASYMMETRY IN THE NUCLEON FROM A RELATIVISTIC ANALYSIS OF THE DRELL–YAN SCATTERING OFF NUCLEI, Modern Physics Letters A, 23(27n30), 2259-2262 (2008)
  • [95] G Smirnov, VV Burov, AV Molochkov, H Toki, Relating F {sub 2}{sup p}(x), F {sub 2}{sup n}(x) and F {sub 2}{sup D}(x) using a relativistic description of the deuteron structure, Nuclear Physics. A, 755 (2005)
  • [96] A Molochkov, Nucleon structure functions and nuclear DIS, AIP Conference Proceedings, 747(1), 233-236 (2005)
  • [97] G Smirnova, VV Burova, AV Molochkovb, H Tokic, Relating Fp 2 (x), Fn 2 (x) and FD 2 (x) using a relativistic description of the deuteron structure, Nuclear Physics A, 755, 337c-340c (2005)
  • [98] VV Burov, AV Molochkov, GI Smirnov, H Toki, Relating the proton, neutron and deuteron structure functions in the covariant Bethe–Salpeter formalism, Physics Letters B, 587(3-4), 175-183 (2004)
  • [99] A Molochkov, Relativistic nature of the EMC effect, arXiv (2004)
  • [100] E Pace, A Molochkov, G Salmè, Electromagnetic form factors of baryons and the Poincaré covariance, Nuclear Physics A, 721, C405-C408 (2003)
  • [101] E Pace, G Salmè, A Molochkov, Baryon elastic and transition form factors with a poincare covariant current operator, Few-Body Problems in Physics’ 02: Proceedings of the XVIIIth European … (2003)
  • [102] SG Bondarenko, VV Burov, AV Molochkov, GI Smirnov, H Toki, Bethe—Salpeter approach with the separable interaction for the deuteron, Progress in Particle and Nuclear Physics, 48(2), 449-535 (2002)
  • [103] VV Burov, SG Bondarenko, AV Molochkov, GI Smirnov, H Toki, Electromagnetic properties of the deuteron in the Bethe-Salpeter approach (2001)
  • [104] AV Molochkov, Space-time structure of a bound nucleon, Nuclear Physics A, 666, 169-172 (2000)
  • [105] VV Burov, AV Molochkov, GI Smirnov, Evolution of the nucleon structure in the lightest nuclei, Physics Letters B, 466(1), 1-10 (1999)
  • [106] VV Burov, AV Molochkov, GI Smirnov, Relativistic theory of the evolution of nucleon structure in nuclei, PHYSICS OF PARTICLES AND NUCLEI C/C OF FIZIKA ELEMENTARNYKH CHASTITS I … (1999)
  • [107] VV Burov, AV Molochkov, The EMC effect on a deuteron from a relativistic point of view, Nuclear Physics A, 637(1), 31-45 (1998)
  • [108] VV Burov, AV Molochkov, GI Smirnov, Evolution of the nucleon structure in light nuclei (1998)
  • [109] VV Burov, AV Molochkov, GI Smirnov, Evolution of the EMC effect in light nuclei, arXiv (1998)
  • [110] VV Burov, AV Molochkov, Binding and Off-Mass-Shell Effects in Deep Inelastic Scattering on Deuteron, arXiv (1997)
  • [111] VV Burov, AV Molochkov, Nuclear effects in deep inelastic scattering on deuteron in the Bethe-Salpeter formalism, Chinese Journal of Physics, 34(3S), 1015-1020 (1996)
  • [112] VV Buraov, AV Molochkov, An impulse approximation for structure function F {sub 2}{sup D} in the Bethe-Salpeter formalism (1996)
  • [113] VV Burov, AV Molochkov, Relativistic view on the nuclear effects in the deep inelastic scattering on deuteron, arXiv (1996)
  • [114] VV Burov, AV Molochkov, An impulse approximation for structure function F $_{2}^{D}$ in the Bethe-Salpeter formalism (1995)
  • [115] EL Bratkovskaya, AV Titov, B Kämpfer, AV Molochkov, BL Reznik, Hadronic sources of lepton-pair production in proton-deuteron interactions at initial energies from 1 to 5 GeV, Physics of Atomic Nuclei, 57(5), 867-873 (1994)
  • [116] EL Bratkovskaya, B Kehmpfir, AV Molochkov, BL Reznik, AI Titov, Hadron sources of the lepton pair production in proton-deuteron interaction at the initial energies 1-5 GeV; Adronnye istochniki obrazovaniya leptonykh par v proton-dejtronnykh …, Yadernaya Fizika, 57 (1994)
  • [117] EL Bratkovskaya, B Kehmpfir, AV Molochkov, BL Reznik, AI Titov, Hadron sources of the lepton pair production in proton-deuteron interaction at the initial energies 1-5 GeV (1994)
  • [118] VV Braguta, VA Goy, EM Ilgenfritz, AY Kotov, AV Molochkov, ..., Lattice Two-Color QCD with nonzero chiral density
  • [119] VA Goy, AV Molochkov, Witten Parameter and High Performance Calculations on the Lattice, Nuclear Theory in the Supercomputing Era (NTSE-2012), 163
更新时间: 2026-09-08 16:48:03