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Cosmic future of nuclear and particle physics

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Konferencja
Proceedings of the Jubilee Symposium for the 50th anniversary of the foundation of the Institute of Nuclear Research "Atomic Science in the XXI Century" June 16, 2005, Warsaw, Poland
Języki publikacji
EN
Abstrakty
EN
Abstract Astronomy and nuclear or particle physics are often considered as two opposite extremes, but in fact their common part is not empty and still enlarging. In this brief review we trace their common roots and we look for their common future. We predict that soon they will de facto merge in terms of phenomena being studied, theories used to describe them as well as experimental techniques. We gave several examples, devoting special attention to the "Pi of the Sky" project searching for optical flashes of astrophysical origin.
Czasopismo
Rocznik
Strony
25--31
Opis fizyczny
Bibliogr. 21 poz., rys.
Twórcy
autor
  • The Andrzej Sołtan Institute for Nuclear Studies, 69 Hoża Str., 00-681 Warsaw, Poland, Tel.: +48 22-6281893, Fax: +48 22-6212804, Grzegorz.Wrochna@fuw.edu.pl
Bibliografia
  • 1. Akerlof CW, Balsano R, Barthelmy SD et al. (1999) Observation of contemporaneous optical radiation from a gamma-ray burst. Nature 398:400−402
  • 2. Banday AJ, Gorski KM, Bennett CL et al. (1997) Root Mean Square Anisotropy in the COBE DMR four-year sky maps. Appl J 475:393−398
  • 3. Bionta RM, Blewitt G, Bratton CB et al. (1987) Observation of a neutrino burst in coincidence with supernova 28 HETE: http://space.mit.edu/HETE/S32 G. Wrochna 1987A in the large Magellanic cloud. Phys Rev Lett 58:1494−1496
  • 4. Burd A, Cwiok M, Czyrkowski H et al. (2005) “Pi of the Sky” − all-sky, real-time search for fast optical transients. New Astron 10;5:409−416
  • 5. Frampton P (2005) Dark energy and dark matter. In: XL Rencontres de Moriond, Electroweak Session, 5−12 March 2005, La Thuile, Italy (in print)
  • 6. Fukudaa Y, Hayakawaa T, Ichihara E et al. (1998) Evidence for oscillation of atmospheric neutrinos. Phys Rev Lett 81:1562−1567
  • 7. Hirata K, Kajita T, Koshiba M et al. (1987) Observation of a neutrino burst from the supernova SN1987a. Phys Rev Lett 58:1490−1493
  • 8. Jaffe AH, Abroe M, Borrill J et al. (2003) Recent results from the MAXIMA experiment. New Astron Rev 47:727−732
  • 9. Klebesadel R, Strong I, Olson R (1973) Observations of gamma-ray bursts of cosmic origin. Appl J Lett 182:L85−L88
  • 10. Le Coultre P (2002) Astro particle physics with the L3+cosmics detector. In: ESO-CERN-ESA Symp on Astronomy, Cosmology and Fundamental Physics, 4−7 March 2002, Garching bei München, Germany, pp 139−142
  • 11. Paczynski B (2001) Optical flashes preceding GRBs. astro-ph/0108522
  • 12. Paczynski B, Haensel P (2005) Gamma-Ray Bursts from quark stars. astro-ph/0502297
  • 13. Perlmutter S, Aldering G, Goldhaber G et al. (1999) Measurements of Ω and Λ from 42 High-Redshift Supernovae. Astrophys J 517:565−586
  • 14. Riess AG, Filippenko AV, Challis PM et al. (1998) Observational evidence from Supernovae for an accelerating Universe and a cosmological constant. Astron J 116:1009−1038
  • 15. Ruhl JE, Ade PAR, Bock JJ et al. (2003) Improved measurement of the angular power spectrum of temperature anisotropy in the CMB from two new analyses of BOOMERANG observations. Astrophys J 599:786−805
  • 16. Seyboth P, Alt C, Anticic T et al. (2005) Indications for the onset of deconfinement in Pb+Pb collisions at the CERN SPS from NA49. Acta Phys Pol B 36;2:565−573
  • 17. Spergel DN, Verde L, Peiris HV et al. (2003) First year Wilkinson microwave anisotropy probe (WMAP) observations: determination of cosmological parameters. Astrophys J 148;Suppl:175−194
  • 18. Turner M (2002) The new in cosmology. Int J Mod Phys A 17;24:3446−3458
  • 19. Vanderspek R, Sakamoto T, Barraud C et al. (2005) HETE observations of the gamma-ray burst GRB030329: evidence for an underlying soft X-ray component. astroph/0401311 (submitted to Astrophys J)
  • 20. Vestrand WT, Wozniak PR, Wren JA et al. (2005) A link between prompt optical and prompt gamma-ray emission in gamma-ray bursts. astro-ph/0503521
  • 21. Zhang B, Mészáros P (2004) Gamma-ray bursts: progress, problems & prospects. Int J Mod Phys A 19;15:2385−2472
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ6-0005-0032
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