1. I.Basile, A.Campoleoni, J. Raeymaekers
    Journal of High Energy Physics 03 (2023) 187-204.
  2. SciPost Physics 15 (2023) 54-.
  3. Journal of High Energy Physics 07 (2023) 032(1)-032(22).
  4. A. Mira Pombo, J. M. S. Oliveira, N. M. Santos
    Physical Review D 108 (2023) 044044(1)-044044(14).
  5. A. Mira Pombo, D. D. Doneva
    Physical Review D 108 (2023) 124068(1)-124068(18).
  6. L. Andrianopoli, B.L. Cerchiai, R. Noris, L. Ravera, M. Trigiante, J. Zanelli
    Physical Review D 108 (2023) 044011(1)-044011(24).
  7. G. Dall'Agata, N. Liatsos, R. Noris, M. Trigiante
    Journal of High Energy Physics 09 (2023) 071(1)-071(91).
  8. Monthly Notices of the Royal Astronomical Society 524 (2023) 4083-4090.
  9. S. Acharya et al., ALICE Collaboration, z FZÚ, P. Závada
    Nature Physics 023 (2023) 1-27.
  10. A. Tumasyan et al., CMS, TOTEM Collaboration, z FZÚ J. Kašpar, V. Kundrát, M. Lokajíček, J. Procházka
    Journal of Instrumentation 18 (2023) P09009(1)-P09009(82).
  11. One hundred years since the birth of Miloš Václav Lokajíček, interdisciplinary scientist and inspirational man
    Československý časopis pro fyziku 73 (2023) 418-427.
  12. A. Tumasyan, CMS, TOTEM Collaboration, z FZÚ, J. Kašpar, V. Kundrát, M. Lokajíček, J. Procházka
    Journal of High Energy Physics 07 (2023) 229(1)-229(52).
  13. H. Gomez, R. Lipinski Jusinskas, C. Lopez-Arcos, A. Quintero Velez
    Physical Review Letters 130 (2023) 081601(1)-081601(7).
  14. F. Antinori et al., NA57 Collaboration, z FZÚ P. Staroba, P. Závada
    European Physical Journal C - Particles and Fields 33 (2004) s618-s620.
  15. A.V. Efremov, O.V. Teryaev, P. Závada
    Physical Review D D70 (2004) 054018(1)-054018(7).
  16. A. Aktas, J. Chýla
    Measurement of dijet production at low Q**2 at HERA
    European Physical Journal C - Particles and Fields 37 (2004) 141-159.
  17. Towards understanding b anti-b production in gamma gamma collisions
    Phys. Rev. D 70 (2004) 054001
  18. B. Badelek, J. Chýla
    TESLA: The Superconducting electron positron linear collider with an integrated X-ray laser laboratory. Technical design report. Part 6. Appendices. Chapter 1. Photon collider at TESLA
    International Journal of Modern Physics A 19 (2004) 5097-5186.
  19. Irreversible time flow and Hilbert space structure
    New Research in Quantum Physics. New York : Nova Science Publishers, Inc, 2004 - (Krasnoholovets, V.; Columbus, F.) pp. 17-41. ISBN 1-59454-001-2
  20. Next-to-next-to-leading order QCD analysis of the Gross-LLewellyn-Smith sum rule and the higher twist effects
    Physics Letters B 297 (1992) 385-397.
  21. Perturbation theory and nonperturbative effects: A Happy marriage?
    Czech. J. Phys. 42 (1992) 263 - 283
  22. Renormalization scheme dependence and infrared behavior in e+ e- annihilations and tau lepton decay at the next-to - next-to-leading order of perturbative QCD
    Phys. Lett. B 267 (1991) 269 - 276
  23. ON AMBIGUITIES IN THE EXPONENTIATION OF LARGE QCD PERTURBATIVE CORRECTIONS
    J. Phys. G Nucl. Part. Phys. 12 (1986) 1297 - 1314
  24. ON THE NUMERICAL SOLUTION OF THE EVOLUTION EQUATION IN QCD
    Czechoslovak Journal of Physics B36 (1986) 567-580.
  25. ON METHODS OF ANALYZING SCALING VIOLATION IN DEEP INELASTIC SCATTERING
    Zeitschrift für Physik C Particles and Fields 31 (1986) 151-161.
  26. ON FIXING THE SCALE IN QCD FROM LATTICE CALCULATIONS
    Czech. J. Phys. B36 (1986) 1259
  27. TWO PARTICLE CORRELATIONS IN ANTI-PROTON PROTON INTERACTIONS AT 5.7-GeV/c
    Czech. J. Phys. B32 (1982) 1011 - 1020