22 citations to https://www.mathnet.ru/eng/phra9
  1. Ivan V. Dudinets, Oleg Lychkovskiy, “Fermionic transport through a driven quantum point contact: Breakdown of Floquet thermalization controlled by the driving frequency”, Phys. Rev. Research, 7:4 (2025)  crossref
  2. Oleksandr Gamayun, Oleg Lychkovskiy, “One-dimensional Fermi polaron after a kick: Two-sided singularity of the momentum distribution, Bragg reflection and other exact results”, SciPost Phys., 17:2 (2024)  crossref
  3. P. L. Krapivsky, “Impurity in a zero-temperature three-dimensional Fermi gas”, Phys. Rev. A, 110:1 (2024)  crossref
  4. Giuseppe del Vecchio del Vecchio, Andrea De Luca, Alvise Bastianello, “Transport through interacting defects and lack of thermalisation”, SciPost Phys., 12:2 (2022)  crossref
  5. Nikolai Il'in, Oleg Lychkovskiy, “Quantum speed limit for thermal states”, Phys. Rev. A, 103:6 (2021), 62204–7  mathnet  crossref  isi  scopus
  6. S I Mistakidis, G M Koutentakis, F Grusdt, H R Sadeghpour, P Schmelcher, “Radiofrequency spectroscopy of one-dimensional trapped Bose polarons: crossover from the adiabatic to the diabatic regime”, New J. Phys., 23:4 (2021), 043051  crossref
  7. N. Il'in, E. Shpagina, O. Lychkovskiy, “Thermodynamics at zero temperature: Inequalities for the ground state of a quantum many-body system”, Phys. Lett. A, 414 (2021), 127637–5  mathnet  crossref  isi  scopus
  8. S I Mistakidis, G M Koutentakis, G C Katsimiga, Th Busch, P Schmelcher, “Many-body quantum dynamics and induced correlations of Bose polarons”, New J. Phys., 22:4 (2020), 043007  crossref
  9. Neil J Robinson, Jean-Sébastien Caux, Robert M Konik, “Light cone dynamics in excitonic states of two-component Bose and Fermi gases”, J. Stat. Mech., 2020:1 (2020), 013103  crossref
  10. Chao Feng, Matthew J. Davis, “Influence of quantum fluctuations on the superfluid critical velocity of a one-dimensional Bose gas”, Eur. Phys. J. D, 74:5 (2020)  crossref
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