1. L. Pizzuti, I. Saltas, A. Biviano, G. Mamon, L. Amendola
    512 (2022) ---.
  2. Progress of Theoretical and Experimental Physics 1 (2022) 013B06(1)-013B06(41).
  3. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Physical Review C 105 (2022) 029902(1)-029902(14).
  4. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    European Physical Journal C - Particles and Fields 82 (2022) 335(1)-335(33).
  5. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Physics Letters B 827 (2022) 136986(1)-136986(29).
  6. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Journal of High Energy Physics 01 (2022) 106(1)-106(26).
  7. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Journal of High Energy Physics 03 (2022) 190(1)-190(35).
  8. S. Acharya et al., A Large Ion Collider Experiment, ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Physical Review Letters 128 (2022) 102001(1)-102001(18).
  9. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Journal of High Energy Physics 05 (2022) 061(1)-061(38).
  10. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Physical Review Letters 128 (2022) 172005(1)-172005(19).
  11. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Physical Review Letters 128 (2022) 252003(1)-252003(18).
  12. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Journal of High Energy Physics 08 (2022) 086(1)-086(23).
  13. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Physical Review C 106 (2022) 034907(1)-034907(20).
  14. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Nature 605 (2022) 440-446.
  15. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Physics Letters B 827 (2022) 136943(1)-136943(19).
  16. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Physics Letters B 827 (2022) 136984(1)-136984(15).
  17. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Physics Letters B 829 (2022) 137060(1)-137060(16).
  18. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Physics Letters B 828 (2022) 137013(1)-137013(26).
  19. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Physical Review D 105 (2022) L011103(1)-L011103(14).
  20. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Physical Review Letters 128 (2022) 012001(1)-012001(13).
  21. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Journal of High Energy Physics 06 (2022) 011(37)-011(37).
  22. S. Acharya et al., ALICE Collaboration, z FZÚ J. A. Mareš, P. Závada
    Physics Letters B 833 (2022) 137272(1)-137272(17).
  23. B. Adeva et al., DIRAC Collaboration, z FZÚ, R. Lednický
    Physical Review D 106 (2022) 032006(1)-032006(18).
  24. K.G. Arun et al., LISA Collaboration, z FZU, R. Oliveri, I. Saltas
    Living Reviews in Relativity 25 (2022) 4(1)-4(148).
  25. Journal of High Energy Physics 10 (2022) 055(1)-055(7).
  26. D. Mirfendereski, J. Raeymaekers, C. Sanlı, D.Van den Bleeken
    Journal of High Energy Physics 08 (2022) 081(1)-081(39).
  27. T. Baker et al., LISA Cosmology Working Group, z FZU, I. Saltas
    Journal of Cosmology and Astroparticle Physics 08 (2022) 031(1)-031(59).
  28. S. Acharya et al., ALICE Collaboration, z FZÚ, P. Závada
    Journal of High Energy Physics 12 (2022) 126(1)-126(25).
  29. I. Alonso et al., z FZU, I. Saltas, C. Skordis
    EPJ Quantum Technology 9 (2022) 30(1)-30(55).
  30. I. Saltas, I.D., Tognelli, E.
    Monthly Notices of the Royal Astronomical Society 514 (2022) 3058--.
  31. The Astronomical Journal 163 (2022) 33(1)-33(15).
  32. LISA collaboration, I. Saltas
    - (2022) ---.
  33. S. Chakrabarti, D. Gupta, A. Manna
    Physics Letters B 835 (2022) 137578(1)-137578(14).
  34. L. Andrianopoli et al., z FZU, R. Noris
    Physical Review D 106 (2022) 2(1)-2(33).
  35. S. Chakrabarti, A. Manna, M. Raman
    Physical Review D 105 (2022) 106025(1)-106025(14).
  36. Journal of High Energy Physics 08 (2022) 238(1)-238(19).
  37. K. Chakravarti, Rajes Ghosh, Sudipta Sarkar
    Physical Review D 106 (2022) ---.
  38. Physics Reports - A Review Section of Physics Letters 980 (2022) 1-95.
  39. G. Antchev et al., TOTEM Collaboration, z FZÚ, J. Kašpar, V. Kundrát, M. Lokajíček, J. Procházka
    European Physical Journal C - Particles and Fields 82 (2022) 263(1)-263(7).
  40. A. Tumasyan et al., CMS, TOTEM Collaborations, z FZÚ, J. Kašpar, V. Kundrát, M. Lokajíček, J. Procházka
    Physical Review Letters 129 (2022) 011801(1)-011801(20).
  41. Strong renormalization scheme dependence in tau lepton decay: Fact or fiction?
    Phys. Rev. D 51 (1995) 5331 - 5334
  42. On the BLM scale fixing procedure, its generalizations and the 'genuine' higher order corrections
    Phys. Lett. B 356 (1995) 341 - 348
  43. On the role of the quark mass thresholds in extrapolations of the running alpha-s
    Phys. Lett. B 351 (1995) 325 - 330
  44. What does the CCFR measurement of the Gross-Llewelyn Smith sum rule tell us?
    Phys. Lett. B 343 (1995) 351 - 357
  45. INFRARED FIXED POINTS IN ASYMPTOTICALLY FREE FIELD THEORIES: WHAT DO THEY TELL US?
    Phys. Rev. D 38 (1988) 3845 - 3849
  46. TWO PARTICLE CORRELATIONS IN ANTI-PROTON PROTON INTERACTIONS AT 5.7-GeV/c
    Czech. J. Phys. B32 (1982) 1011 - 1020
  47. SINGLE PARTICLE INCLUSIVE SPECTRA OF CHARGED PARTICLES FROM ANTI-PROTON PROTON INTERACTIONS AT 5.7-GeV/c
    Czech. J. Phys. B30 (1980) 621 - 639
  48. The Separation of Elastic Events in Bubble Chamber Experiments
    Czechoslovak Journal of Physics B27 (1977) 1325-1336.
  49. E. Boos, J. Chýla
    Charge Asymmetry at Large p(T) in Inelastic anti-p p Reactions at 22.4-GeV/c
    Nucl. Phys. B 128 (1977) 269
  50. E. Boos, J. Chýla
    Single Particle Inclusive Spectra of Charged Particles in anti-p p Interactions at 22.4-GeV/c
    Nucl. Phys. B 121 (1977) 381