73 citations to https://www.mathnet.ru/rus/prl4
  1. Alexander E. Teretenkov, “Non-perturbative effects in corrections to quantum master equations arising in Bogolubov–van Hove limit”, J. Phys. A, 54:26 (2021), 265302–24  mathnet  crossref  isi  scopus
  2. Erika Ye, Garnet Kin-Lic Chan, “Constructing tensor network influence functionals for general quantum dynamics”, The Journal of Chemical Physics, 155:4 (2021)  crossref
  3. K. Goswami, C. Giarmatzi, C. Monterola, S. Shrapnel, J. Romero, F. Costa, “Experimental characterization of a non-Markovian quantum process”, Phys. Rev. A, 104:2 (2021)  crossref
  4. Felipe F. Fanchini, Göktuğ Karpat, Daniel Z. Rossatto, Ariel Norambuena, Raúl Coto, “Estimating the degree of non-Markovianity using machine learning”, Phys. Rev. A, 103:2 (2021)  crossref
  5. Hongfei Wang, Xiujuan Zhang, Jinguo Hua, Dangyuan Lei, Minghui Lu, Yanfeng Chen, “Topological physics of non-Hermitian optics and photonics: a review”, J. Opt., 23:12 (2021), 123001  crossref
  6. Sreetama Das, Sudipto Singha Roy, Samyadeb Bhattacharya, Ujjwal Sen, “Nearly Markovian maps and entanglement-based bound on corresponding non-Markovianity”, J. Phys. A: Math. Theor., 54:39 (2021), 395301  crossref
  7. Luis E. Herrera Rodríguez, Alexei A. Kananenka, “Convolutional Neural Networks for Long Time Dissipative Quantum Dynamics”, J. Phys. Chem. Lett., 12:9 (2021), 2476  crossref
  8. Scott Davidson, Felix A. Pollock, Erik Gauger, “Principles underlying efficient exciton transport unveiled by information-geometric analysis”, Phys. Rev. Research, 3:3 (2021)  crossref
  9. Philip Taranto, Felix A. Pollock, Kavan Modi, “Non-Markovian memory strength bounds quantum process recoverability”, npj Quantum Inf, 7:1 (2021)  crossref
  10. Dominikus Brian, Xiang Sun, “Generalized quantum master equation: A tutorial review and recent advances”, Chinese Journal of Chemical Physics, 34:5 (2021), 497  crossref
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