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Strong field QED with highly charged ions

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發(fā)表日期:2017-07-06來源:近代物理研究所放大 縮小

  報(bào)告題目:Strong field QED with highly charged ions 

  報(bào)告人:  Prof. Dr. Vladimir M. Shabaev 

  Department of Physics,  

  St.Petersburg State University, Russia 

  時(shí)間:   2017年7月10日(星期一) 上午10:30  

  地點(diǎn):  近代物理所5號(hào)樓911會(huì)議室 

  報(bào)告人簡(jiǎn)介: 

  Vladimir M. Shabaev  

  Full Professor, Head of Division  

  Department of Physics, St.Petersburg State University  

  E-mail: v.shabaev@spbu.ru 

  Academic degrees:  

  ? Doctor of Science, St.Petersburg State University, 1993  

  Thesis: “Two-time Green’s function method in quantum electrodynamic theory of highly charged ions”  

  ? Candidate of Science (= Ph.D.), Leningrad State University, 1985  

  Thesis: “Isotopic shift and hyperfine structure of energy levels in relativistic theory of atom” 

  ? Master of Science, Leningrad State University, 1982  

    Professional appointments:  

  ? Head of Quantum Mechanics Division, SPSU, 2007 - till present  

  ? Full Professor, SPSU, 1998 - till present  

  ? Associate Professor, SPSU, 1994-1997  

  ? Assistant Professor, SPSU, 1991-1994  

  ? Assistant Professor, Northwest Correspondence Polytechnical Institute, 1986-1991  

  ? Assistant Professor, Novgorod Polytechnical Institute, 1985-1986  

  Prizes:  

  ? Bessel research award, 2002  

  ? First prize of the Physical Center for Study and Research of St.Petersburg State University, 1999 (together with V.A. Yerokhin and A.N. Artemyev) 

   Scientific interests:  

  ? Quantum electrodynamics at strong and supercritical fields  

  ? Tests of fundamental theories and determination of fundamental constants with atomic systems  

  ? Development of new methods in relativistic theory of atom  

  ? Lamb shift, hyperfine splitting, g-factor, and transition probabilities in highly charged ions  

  ? Parity-nonconservation effects in atoms and ions  

  ? Recombination, charge transfer, and electron-positron pair creation in heavy ion collisions  

  ? Heavy ions and atoms in strong laser fields 

    

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