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  1. Praveen Kumar, Svetlana A. Malinovskaya, Vladimir S. Malinovsky. (2014). "Optimal control of multilevel quantum systems in the field-interaction representation", Phys. Rev. A , 90 033427.  Download  (802 kb PDF).
  2. Maxim Sukharev, Svetlana A. Malinovskaya. (2014). "Collective effects in subwavelength hybrid systems: a numerical analysis", Mol. Phys., 113 392.  Download  .
  3. G. Liu, V. Zakharov, T. Collins, P. Gould, S.A. Malinovskaya. (2014). "Optimal control of multilevel quantum systems in the field-interaction representation", Phys. Rev. A., 89 041803(R).  Download  (1202 kb PDF).
  4. E. Kusnetzova, G. Liu, S.A. Malinovskaya. (2014). "Adiabatic rapid passage two-photon excitation of a Rydberg atom", Phys. Scr., 160 014024.  Download  .
  5. Kumar P., Malinovskaya S.A., Sola I.R., Malinovsky V.S.. (Feb 2014). "Selective creation of maximum coherence in multi-level system", Molecular Physics, Taylor & Francis. 112 236-331.  Download  .
  6. S.A. Malinovskaya, S.L. Horton. (2013). "Impact of decoherence on internal state cooling using optical frequency combs", J. Opt. Soc. Am. B, 30 482.  Download  .
  7. M. Sukharev, S.A. Malinovskaya. (2012). "Stimulated Raman adiabatic passage as a route to achieving optical control in plasmonics", Phys. Rev. A, 86 043406.  Download  .
  8. T.A. Collins, S.A. Malinovskaya. (2013). "Robust Control in Ultracold Alkali Metals using a Single Linearly Chirped Pulse", J. Mod. Optics, 60 28.  Download  .
  9. V. Patel, S.A. Malinovskaya. (2012). "Realization of population inverstion under the nonadiabatic conditions induced by the coupling between vibrational modes", Int. J. Quant. Chem., 112 3739.  Download  .
  10. T. A. Collins, S. A. Malinovskaya. (2012). "Manipulation of ultracold rubidium atoms using a single linearly chirped laser pulse", Optics Lett., 37 2298.  Download  (313 kb PDF).
  11. Svetlana A. Malinovskaya, Tom Collins, Vishesha Patel. (2012). "Ultrafast manipulation of Raman transitions and prevention of decoherence using chirped pulses and optical frequency combs", Advanc. Quant. Chem., 64  Download  (3399 kb PDF).
  12. P. Kumar, S.A. Malinovskaya, V.S. Malinovsky. (2011). "Optimal control of population and coherence in three-level λ-systems", J. Phys. B: At. Mol. Opt. Phys., 44 154010 .  Download  (1011 kb PDF).
  13. P.E. Hawkins, S.A. Malinovskaya, V.S. Malinovsky. (2012). "Ultrafast geometric control of a single qubit using chirped pulses", Phys. Scr., 147 014013.  Download  (163 kb PDF).
  14. Vishesha Patel and Svetlana Malinovskaya. (2011). "Nonadiabatic effects induced by the coupling between vibrational modes via Raman fields", Phys. Rev. A, 83 013413.  Download  (1037 kb PDF).
  15. S. Malinovskaya, W. Shi. (2010). "Feshbach-to-ultracold molecular state Raman transitions via a femtosecond optical frequency comb", J. Mod. Opt. , 57 1871.  Download  (457 kb PDF).
  16. S. Malinovskaya, V. Patel, T. Collins. (2010). "Internal state cooling with a femtosecond optical frequency comb", Int. J. Quant. Chem. , 110 3080 .  Download  (410 kb PDF).
  17. W. Shi, S. Malinovskaya. (2010). "Implementation of a single femtosecond optical frequency comb for molecular cooling", Phys. Rev. A , 82 013407.  Download  (355 kb PDF).
  18. Praveen Kumar, Svetlana A. Malinovskaya. (2010). "Quantum dynamics manipulation using optimal control theory in the presence of laser field noise", J. Mod. Opt. , 57 1243.  Download  (292 kb PDF).
  19. Vishesha Patel, Vladimir Malinovsky, Svetlana Malinovskaya. (2010). "Effects of phase and coupling between the vibrational modes on selective excitation in CARS microscopy", Phys. Rev. A, 81 063404.  Download  (822 kb PDF).
  20. S.A. Malinovskaya. (2009). "Optimal Coherence via Adiabatic Following", Optics Comm., 282 3527.  Download  (393 kb PDF).
  21. B. Corn, S.A. Malinovskaya. (2009). "An ab initio analysis of charge redistribution upon isomerization of retinal in rhodopsin and bacteriorhodopsin", Int. J. Quant. Chem., 109 3131.  Download  (404 kb PDF).
  22. S.A. Malinovskaya. (2009). "Robust control by two chirped pulse trains in the presence of decoherence", J. Mod. Opt., 56 784.  Download  (771 kb PDF).
  23. Svetlana A. Malinovskaya. (2008). "Prevention of decoherence by two femtosecond chirped pulse trains", Optics Lett., 33 2245.  Download  (228 kb PDF).
  24. S.A. Malinovskaya, V.S. Malinovsky. (2007). "Chirped Pulse Adiabatic Control in CARS for Imaging Biological Structure and Dynamics", Optics Lett. , 32 707.  Download  (240 kb PDF).
  25. S.A. Malinovskaya. (2006). "Mode selective excitation using ultrafast chirped laser pulses", Phys. Rev. A. , 73 033416.  Download  (488 kb PDF).
  26. S. Malinovskaya, P. Bucksbaum, P. Berman. (2004). "Theory of selective excitation in Stimulated Raman Scattering", Phys. Rev. A , 69 013801.  Download  (70 kb PDF).
  27. S. Malinovskaya, P. Bucksbaum, P. Berman. (2004). "On the role of coupling in mode selective excitation using ultrafast pulse shaping in stimulated Raman spectroscopy", J. Chem. Phys. , 121 3434.  Download  (373 kb PDF).
  28. S. Malinovskaya, R. Cabrera-Trujillo, J.R. Sabin, E. Deumens and Y. Ohrn. (2002). "Dynamics of proton-acetylene collisions at 30 eV", J. Chem. Phys. , 117 1103.  Download  (382 kb PDF).
  29. Malinovskaya S.A., and Cederbaum L.S.. (2000). "Violation of electronic optical selection rules in X-ray emission by nuclear dynamics: time-dependent formulation", Phys. Rev. A , 61 42706.  Download  (215 kb PDF).


  1. Svetlana A. Malinovskaya, Irina Novikova, Edts.. (2015). From Atomic to Mesoscale: The Role of Quantum Coherehce in Systems of Various Complexities, World Scientific Publishing Co. PTE. LTD.
  2. S.A. Malinovskaya. (2005). "Observation and control of molecular motion using ultrafast laser pulses", Trends in Chemical Physics Research, Linke, A.N., Nova Science Publishers, Inc., New York. 257-280.

Book Chapters

  1. Svetlana A. Malinovskaya, Tom Collins, Vishesha Patel. (2012). "Ultrafast manipulation of Raman transitions and prevention of decoherence using chirped pulses and optical frequency combs", Advances in Quantum Chemistry, Elsevier. 64 211.  Download.