Information theory in high energy physics (extensive and nonextensive approach) (2003)
- Authors:
- Autor USP: NAVARRA, FERNANDO SILVEIRA - IF
- Unidade: IF
- Subjects: MECÂNICA ESTATÍSTICA; PROBABILIDADE; TEORIA DA INFORMAÇÃO; FÍSICA DE ALTA ENERGIA
- Language: Inglês
- Imprenta:
-
ABNT
NAVARRA, Fernando Silveira et al. Information theory in high energy physics (extensive and nonextensive approach). . São Paulo: IFUSP. Disponível em: http://xxx.if.usp.br/PS_cache/hep-ph/pdf/0312/0312136.pdf. Acesso em: 05 jun. 2023. , 2003 -
APA
Navarra, F. S., Utyuzh, O. V., Wilk, G., & Wlodarczyk, Z. (2003). Information theory in high energy physics (extensive and nonextensive approach). São Paulo: IFUSP. Recuperado de http://xxx.if.usp.br/PS_cache/hep-ph/pdf/0312/0312136.pdf -
NLM
Navarra FS, Utyuzh OV, Wilk G, Wlodarczyk Z. Information theory in high energy physics (extensive and nonextensive approach) [Internet]. 2003 ;[citado 2023 jun. 05 ] Available from: http://xxx.if.usp.br/PS_cache/hep-ph/pdf/0312/0312136.pdf -
Vancouver
Navarra FS, Utyuzh OV, Wilk G, Wlodarczyk Z. Information theory in high energy physics (extensive and nonextensive approach) [Internet]. 2003 ;[citado 2023 jun. 05 ] Available from: http://xxx.if.usp.br/PS_cache/hep-ph/pdf/0312/0312136.pdf - Pentaquarks in QCD sum rules
- Non-linear QCD dynamics in two-photon interactions at high energies
- Soliton propagation in relativistic hydrodynamics
- Quark gluon plasma in strong magnetic field
- Gluon saturation and Feynman scaling in leading neutron production
- Exclusive heavy vector meson photoproduction in hadronic collisions at the LHC: predictions of the color glass condensate model for run 2 energies
- Heavy quark production in pA collisions: the double parton scattering contribution
- Exclusive vector meson photoproduction with a leading baryon in photon: hadron interactions at hadronic colliders
- D - meson production at very forward rapidities: estimating the intrinsic charm contribution.
- Double vector meson production in 'gama''gama' interactions at hadronic colliders
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