E-mail address:

    Collaborations



    Research Center for Quantum Information
    Institute of Physics
    Slovak Academy of Sciences
    (Bratislava, Slovakia)
    Common publications: 
    1. S. N. Filippov, J. Piilo, S. Maniscalco, M. Ziman, Divisibility of quantum dynamical maps and collision models. Phys. Rev. A 96, 032111 (2017)
    2. S.N. Filippov and M. Ziman. Entanglement sensitivity to signal attenuation and amplification. Phys. Rev. A 90, 010301(R) (2014)
    3. S. N. Filippov, A. A. Melnikov, and M. Ziman. Dissociation and annihilation of multipartite entanglement structure in dissipative quantum dynamics. Phys. Rev. A 88, 062328 (2013)
    4. S.N. Filippov, M. Ziman. Bipartite entanglement-annihilating maps: Necessary and sufficient conditions. Phys. Rev. A 88, 032316 (2013)
    5. T. Rybar, S.N. Filippov, M. Ziman, V. Buzek. Simulation of indivisible qubit channels in collision models. J. Phys. B: At. Mol. Opt. Phys. 45, 154006 (2012)
    6. S.N. Filippov, M. Ziman. Probability-based comparison of quantum states. Phys. Rev. A 85, 062301 (2012)
    7. S.N. Filippov, T. Rybar, M. Ziman. Local two-qubit entanglement-annihilating channels. Phys. Rev. A 85, 012303 (2012)


    National Institute of Optics (INO-CNR) and
    European Laboratory for Non-Linear Spectroscopy (LENS)
    (Florence, Italy)



    Common publications:
    1. S.N. Filippov, V.I. Man'ko, A.S. Coelho, A. Zavatta, M. Bellini. Single photon-added coherent states: estimation of parameters and fidelity of the optical homodyne detection. Physica Scripta T153, 014025 (2013)
    2. M. Bellini, A.S. Coelho, S.N. Filippov, V.I. Man'ko, A. Zavatta. Towards higher precision and operational use of optical homodyne tomograms. Phys. Rev. A 85, 052129 (2012)

    University of Turku
    (Turku, Finland)


    Common publications:
    1. S. N. Filippov, S. Gudder, T. Heinosaari, L. Leppäjärvi. Operational restrictions in general probabilistic theories // Foundations of Physics 50, 850-876 (2020).
    2. S. N. Filippov, A. N. Glinov, L. Leppäjärvi. Phase covariant qubit dynamics and divisibility // Lobachevskii Journal of Mathematics 41, 617-630 (2020).
    3. S. N. Filippov, T. Heinosaari, L. Leppajarvi. Simulability of observables in general probabilistic theories. Phys. Rev. A 97, 062102 (2018)
    4. S. N. Filippov, J. Piilo, S. Maniscalco, M. Ziman, Divisibility of quantum dynamical maps and collision models. Phys. Rev. A 96, 032111 (2017)
    5. S.N. Filippov, T. Heinosaari, L. Leppäjärvi. Necessary condition for incompatibility of observables in general probabilistic theories. Phys. Rev. A 95, 032127 (2017)


    The Nicolaus Copernicus University
    (Toruń, Poland)
    Common publications:
    1. E. O. Kiktenko, A. O. Malyshev, A. S. Mastiukova, V. I. Man'ko, A. K. Fedorov, D. Chruściński. Probability representation of quantum dynamics using pseudostochastic maps // Physical Review A 101, 052320 (2020)
    2. S. N. Filippov, D. Chruscinski. Time deformations of master equations // Phys. Rev. A 98, 022123 (2018)
    3. F. Benatti, D. Chruscinski, S. Filippov. Tensor power of dynamical maps and positive versus completely positive divisibility. Phys. Rev. A 95, 012112 (2017)
    4. D. Chruściński, G. Marmo, V. Manko, F. Ventriglia. On pseudo-stochastic matrices and pseudo-positive maps // Physica Scripta 90, 115202 (2015).
    universitatea-politehnica-timisoara.jpg
    Politehnica University of Timişoara (Timisoara, Romania)
    Common publications: 
    1. S. N. Filippov, K. Yu. Magadov, M. A. Jivulescu. Absolutely separating quantum maps and channels. New J. Phys. 19, 083010 (2017)
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