ITMO University Saint Petersburg National Research University of Information Technologies, Mechanics and Optics

Vadim K. Turkov

Vadim K. Turkov

Ph.D.

Position:

Researcher

Education

Ph.D.

ITMO University
Thesis:
Optical spectroscopy of anisotropic and doped semiconductor nanocrystals

Experiences

Mathematical modeling of optical processes in nanocrystals using MATLAB, Mathematica and Python

Research interests

Intraband optical transitions, quantum dot supercrystals

  1. V. K. Turkov, M. Yu. Leonov, A. V. Baranov, A. V. Fedorov, I. D. Rukhlenko. Optical transitions in a complex valence band of semiconductor nanocrystals. Journal of Optical Technology, 82(11) 743 (2015)
  2. Vadim K. Turkov, Alexander V. Baranov, Anatoly V. Fedorov, Ivan D. Rukhlenko. Radiative decay rates of impurity states in semiconductor nanocrystals. AIP Advances, 5(10) 107126 (2015)
  3. E. V. Ushakova, T. K. Kormilina, M. A. Burkova, S. A. Cherevkov, V. V. Zakharov, V. K. Turkov, A. V. Fedorov, A. V. Baranov. The influence of ligand type on self-organization and optical properties of cadmium selenide quantum dots. Optics and Spectroscopy, 122(1) 25-29 (2017)
  4. Anvar S. Baimuratov, Ivan D. Rukhlenko, Vadim K. Turkov, Alexander V. Baranov, Anatoly V. Fedorov. Quantum-dot supercrystals for future nanophotonics. Scientific Reports, 3 1727-(1-9) (2013)
  5. Anvar S. Baimuratov, Vadim K. Turkov, Ivan D. Rukhlenko, Alexander V. Baranov, Anatoly V. Fedorov. Nanoscale quantum-dot supercrystals. Proceedings of SPIE, 8807 88070Q (2013)
  6. Vadim K. Turkov, Anvar S. Baimuratov, Ivan D. Rukhlenko, Alexander V. Baranov, Anatoly V. Fedorov. Spectroscopy of intraband optical transitions in anisotropic semiconductor nanocrystals. Proceedings of SPIE, 8807 88070U (2013)
  7. Vadim K. Turkov, Mikhail Y. Leonov, Ivan D. Rukhlenko, Anatoly V. Fedorov. Pauli equation for semiconductor quantum dot photoluminescence kinetics investigation. Proceedings of SPIE, 8564 85641Y (2012)
  8. Ivan D. Rukhlenko, Mikhail Yu. Leonov, Vadim K. Turkov, Aleksandr P. Litvin, Anvar S. Baimuratov, Alexander V. Baranov, Anatoly V. Fedorov. Kinetics of pulse-induced photoluminescence from a semiconductor quantum dot. Optics Express, 20(25) 27612 (2012)
  9. Anvar S. Baimuratov, Vadim K. Turkov, Ivan D. Rukhlenko, Anatoly V. Fedorov. Shape-induced anisotropy of intraband luminescence from a semiconductor nanocrystal. Optics Letters, 37(22) 4645 (2012)
  10. M. Yu. Leonov, V. K. Turkov, I. D. Rukhlenko, A. V. Fedorov. Kinetics of resonance luminescence of a single quantum dot at room temperature. Optics and Spectroscopy, 113(3) 265-270 (2012)
  11. M. Yu. Leonov, V. K. Turkov, I. D. Rukhlenko, A. V. Fedorov. Kinetics of thermalized luminescence of a single quantum dot at room temperature. Optics and Spectroscopy, 113(3) 259-264 (2012)
  12. V. K. Turkov, S. Yu. Kruchinin, A. V. Fedorov. Intraband optical transitions in semiconductor quantum dots: Radiative electronic-excitation lifetime. Optics and Spectroscopy, 110(5) 740-747 (2011)
  13. S.Yu. Kruchinin, I.D. Rukhlenko, A.S. Baimuratov, M.Yu. Leonov, V.K. Turkov, Y.K. Gun’ko, A.V. Baranov, A.V. Fedorov. Photoluminescence of a quantum-dot molecule. Journal of Applied Physics, 117(1) 014306-(1-7) (2015)
  14. A.S. Baimuratov , V.K. Turkov , M.Yu. Leonov, Y.K. Gun'ko , A.V. Baranov, A.V. Fedorov , I.D. Rukhlenko . Phonon-induced photoluminescence from a single quantum dot in the regime vibrational resonance. Proceedings - 2014 International Conference Laser Optics, LO 2014 (2014)
  15. Anvar S. Baimuratov, Ivan D. Rukhlenko, Vadim K. Turkov, Irina O. Ponomareva, Mikhail Yu. Leonov, Tatiana S. Perova, Kevin Berwick, Alexander V. Baranov, Anatoly V. Fedorov. Level Anticrossing of Impurity States in Semiconductor Nanocrystals. Scientific Reports, 4 6917-(1-6) (2014)
  16. Anvar S. Baimuratov, Ivan D. Rukhlenko, Vadim K. Turkov , Mikhail Yu. Leonov, Alexander V. Baranov, Yurii K. Gun’ko , Anatoly V. Fedorov. Harnessing the Shape-Induced Optical Anisotropy of a Semiconductor Nanocrystal: A New Type of Intraband Absorption Spectroscopy. The Journal of Physical Chemistry C, 118(5) 2867–2876 (2014)