International Journal of Theoretical and Mathematical Physics

International Journal of Theoretical and Mathematical Physics is a peer-reviewed journal, publishing papers on all areas in which theoretical physics and mathematics interact with each other. It features the reports on current developments in theoretical physics as well as related mathematical problems.


Shahin Agaev

Editorial Board Member of International Journal of Theoretical and Mathematical Physics

Staff Scientist, Baku State University, Azerbaijan

Research Areas

Quantum Chromodynamics, Gauge Field Theory

Education

1985Ph.DFaculty of Physics, Moscow State University
1982M.ScFaculty of Physics, Moscow State University

Experience

2005-presentChief research scientist, HEP group, Institute for Physical Problems, BSU
1990-2005Chief research scientist, High Energy Physics Lab., Baku State University
1985-1990Research scientist, Institute for Space Research, Baku

Publications: Conferences/Workshops/Symposiums/Journals/Books

[1]  S. S. Agaev, V.M. Braun, N. Offen and F.A.Porkert, Light cone sum rules for the pi0-gamma*-gamma form factor revisited, Phys. Rev. D83, 054020, 2011.
[2]  S. S. Agaev, Constraints on distribution amplitudes of the eta and eta’ mesons in the light of new experimental results, Eur. Phys. J. C 70, 125, 2010.
[3]  S. S. Agaev, M.A. Gomshi Nobary, Soft end-point and mass corrections to the η’g*g* vertex function, Eur. Phys. J. C 54, p. 219-229, 2008.
[4]  S. S. Agaev, M. A. Gomshi Nobary, The pion asymptotic distribution amplitude from the holographic QCD and electromagnetic form factor Fπ(Q2), Phys. Rev. D77, 074014, 2008.
[5]  S. S. Agaev, Interference of soft end-point and mass corrections in the vertex function Fη’g*g* (Q2,ω,η), Proc. of the I Republican Conference on Modern Physics, p. 17-19, 2007.
[6]  S. S. Agaev, Mathematical modeling of the pion electromagnetic and transition form factors within the light-cone sum rules method, Proc. of the "Application of information-communication technologies in science and education", 1-3 Nov. 2007, Baku, v. II, pp.348-358, 2007.
[7]  S. S. Agaev, Impact of the higher twist effects on the γγ*→π0 transition form factor, Phys. Rev. D72, 114010, 2005; E.-ibid D73, 059902,2006.
[8]  S. S. Agaev, Higher twist distribution amplitudes of the pion and electromagnetic form factor Fπ(Q2), Phys. Rev. D72, 074020, 2005.
[9]  S. S. Agaev, Power corrections to theπ0γtransition form factor and pion distribution amplitudes, Phys. Rev. D69, 094010, 2004.
[10]  S. S. Agaev and N.G. Stefanis, Gluon content of the η and η’ mesons and theηγ, η’γ electromagnetic transition form factors, Phys. Rev. D70, 054020, 2004.
[11]  S. S. Agaev, M. Guidal, B. Pire, Power corrections to the processγ*γ→ππin the running coupling method, Eur. Phys. J. C 37, p. 457-464, 2004.
[12]  S. S. Agaev, N.G. Stefanis, Power corrections to the space-like transition form factor Fη’g*g* (Q2,ω), Eur. Phys. J. C 32, p. 507-528, 2004.
[13]  N.G. Stefanis and S. S. Agaev, The gluon content of the ηandη’ mesons, Invited plenary talk presented at Second Symposium on Threshold Meson Production in pp and pd Interactions, Krakow, Poland, May 31 – June 3, 2004, hep-ph/0409198.
[14]  S.S. Agaev, ηγandη’γtransition form factors within the running coupling constant method Phys. Rev. D64, 014007, 2001.
[15]  S. S. Agaev, A. I. Mukhtarov, Power corrections to the pion-photon transition form factor Fπγ(Q2), Int. J. Mod. Phys. A16, p. 3179-3190, 2001.
[16]  S. S. Agaev, A. I. Mukhtarov, Y. V. Mamedova, Mesons distribution amplitudes in the "naive non-abelianization" approximation and power-suppressed corrections to FM(Q2), Mod. Phys. Lett. A15, p. 1419-1428, 2000.
[17]  S. S. Agaev, A. I. Mukhtarov, Y. V. Mamedova, Infrared renormalon effects on light mesons M distribution amplitudes and FM(Q2), Fπγ(Q2) form factors, Fizika (Azerb.), v.6, N1, 3-8, 2000.
[18]  S. S. Agaev, A. I. Mukhtarov, Y. V. Mamedova, Mesons infrared renormalon corrected distribu-tion amplitudes and ηγ, η’γ transition form factors, Fizika (Azerb.), v.7, N2, p. 43-47, 2000.
[19]  S.S. Agaev, Light mesons elm form factor and running coupling effects, Nucl. Phys. Proc. Suppl. 74, p. 155-158, 1999.
[20]  S. S. Agaev, Single meson photoproduction via higher twist mechanism and ir renormalons, Few Body Syst. Suppl. 11, p. 263-266, 1999.
[21]  S. S. Agaev, A. I. Mukhtarov, Y. V. Mamedova, The dependence of the light mesons’ electro-magnetic form factors on the factorization scale, Fizika (Azerb.), v.5, N3, p. 3-7, 1999.
[22]  S. S. Agaev, A. I. Mukhtarov, Y. V. Mamedova, The ρL-meson electromagnetic form factor , Baku University News, Ser. of Physical and Mathematical Sciences, N3-4, p. 23-32, 1999.
[23]  S. S. Agaev, The running coupling method with next-to-leading order accuracy and pion, kaon elm form factors, Mod. Phys. Lett.A13, p. 2637-2644, 1998.
[24]  S. S. Agaev, Single meson photoproduction and IR renormalons, Eur. Phys. J.C1, p.321-331, 1998.
[25]  S. S. Agaev, Resummation of IR renormalons in a single meson photoproduction, Turk. J. Phys.22, p. 761-775, 1998.
[26]  S. S. Agaev, Ir renormalon effects and light mesons’ elm form factor, BSU preprint BSU-HEP-0078, hep-ph/9805230.
[27]  S. S. Agaev, The kaon electromagnetic form factor and effects of running coupling constant, Mod. Phys. Lett. A11, p. 957-963, 1996.
[28]  S. S. Agaev, Resummation of infrared renormalons in the pion electromagnetic form factor calculations, ICTP preprint IC/95/291, hep-ph/9611215.
[29]  S. S. Agaev, Electromagnetic pion form-factor in the context of the principal value method, Phys. Lett. B360, p. 117-122, 1995, E.-ibid.B369, 379, 1996.
[30]  S. S. Agaev, Calculation of the K meson form-factor by means of the principal value method, Mod. Phys. Lett. A10, p.2009-2017, 1995.
[31]  S. S. Agaev, Vector meson hadron collisions: large invariant mass and transverse momentum lepton pair production, Int. J. Mod. Phys. A9, p. 5077-5095, 1994.
[32]  S. S. Agaev, How much can we learnt about pion wave function from the Drell-Yan process? Int. J. Mod. Phys. A8, p. 2605-2622, 1993.
[33]  S.S. Agaev, High twist contribution to large PT dilepton production, Z. Phys. C57, p.403, 1993.
[34]  S.S. Agaev, Drell-Yan mechanism and higher twist contributions to the lepton pair production cross-section, Phys. Lett. B283, p. 125-128, 1992.
[35]  S.S. Agaev, The lepton pair production in meson-hadron collision. BSU-HEP-0002, 1991, 22pp.
[36]  S.S. Agaev, S. A. Mamedov, K. A. Rustamov, QCD effective lagrangians of massive particles in the vacuum chromomagnetic fields, Prep. of Baku Inst. for Space Research, N16, p.16, 1986.
[37]  S.S. Agaev, A. S. Vshivitsev, V. Ch. Zhukovsky, O. F. Semenov, Finite temperature effective lagrangian in Yang-Mills field theory, Sov. Phys. J. 28, p.67-69, 1985.
[38]  S.S. Agaev, A. S. Vshivitsev, V. Ch. Zhukovsky, O. F. Semenov, Thermodynamic potential of a quark-antiquark plasma in a constant chromomagnetic field, Sov. Phys. J. 28, p.29- 32, 1985.
[39]  S.S. Agaev, A. S. Vshivitsev, V. Ch. Zhukovsky, P. G. Midodashvili, Vacuum instability in the external color electric field, Vest. Mosk. Univ.,Fiz.26, p.12-16, 1985.
[40]  S.S. Agaev, The effective temperature lagrangian of spin half and mass zero particles, VINITI, N540-85, p. 14, 1985.
[41]  S.S. Agaev, A. S. Vshivitsev, V. Ch. Zhukovsky, O. F. Semenov, Thermodynamics of quark-antiquark and gluon plasma and instability of vacuum in homogeneous Yang-Mills fields, VINITI, N66745-84, pp. 32, 1984.
[42]  S.S. Agaev, A. S. Vshivitsev, V. Ch. Zhukovsky, O. F. Semenov, Exact solutions of the Yang-Mills equations and stability problem of constant potentials, VINITI, N8022-84, pp. 21, 1984.
[43]  S.S. Agaev, A. S. Vshivitsev, V. Ch. Zhukovsky, P. G. Midodashvili, Quasiclassical description of the vacuum instability in an external nonabelian gauge field, Sov. Phys. J. 26, p459-461, 1983.
[44]  S.S. Agaev, A. S. Vshivitsev, V. Ch. Zhukovsky, O. F. Semenov, Thermodynamical potential of the non-abelian plasma in constant gauge field, Proceedings of the YI International Seminar on HEP and Quantum Field Theory, Protvino, v.1, p. 188-199, 1983.
[45]  S.S. Agaev, A. S. Vshivitsev, V. Ch. Zhukovsky, Instability of vacuum in constant and ho-mogeneous gauge fields (Quasiclassical description), Yad. Fiz. 36, p. 1023-1029, 1982.
[46]  S.S. Agaev, A. S. Vshivitsev, V. Ch. Zhukovsky, The instability of the translation-invariant configurations of gauge fields (quasiclassical approach), Proceedings of the Y International Seminar on HEP and Quantum Field Theory, Protvino, v.1, p. 262-277, 1982.