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Pregled bibliografske jedinice broj: 261187

Cosmological Constant Problem Solution Valid for Both Planck's and Cosmological Scales


Novaković, Branko; Novaković, Dario; Novaković, Alen
Cosmological Constant Problem Solution Valid for Both Planck's and Cosmological Scales // Computing Anticipatory Systems: CASYS'05 - Seventh International Conference on Computing Anticipatory Systems (AIP Conference Proceedings / Mathematical and Statistical Phsyics) / Dubois, Daniel (ur.).
Melville (NY): American Institute of Physics (AIP), 2006. str. 144-156 (poster, nije recenziran, sažetak, znanstveni)


CROSBI ID: 261187 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Cosmological Constant Problem Solution Valid for Both Planck's and Cosmological Scales

Autori
Novaković, Branko ; Novaković, Dario ; Novaković, Alen

Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni

Izvornik
Computing Anticipatory Systems: CASYS'05 - Seventh International Conference on Computing Anticipatory Systems (AIP Conference Proceedings / Mathematical and Statistical Phsyics) / Dubois, Daniel - Melville (NY) : American Institute of Physics (AIP), 2006, 144-156

ISBN
0735403317

Skup
Seventh International Conference on Computing Anticipatory Systems

Mjesto i datum
Liège, Belgija, 08.08.2005. - 13.08.2005

Vrsta sudjelovanja
Poster

Vrsta recenzije
Nije recenziran

Ključne riječi
Riemann’ s Geometry; Nondiagonal Line Element; Cosmological Constant Problem; Vacuum Energy; Attractive and Repulsive Gravity.

Sažetak
The relation between cosmological constant lambda and the energy density of the vacuum has led to a big problem. Thus, the modern quantum field theories such as QCD, EW and GUTs predicted vary large values for vacuum energy density at the present time(10exp93), and its dimensionless form omega (10exp122xh0exp(-2), where h0 is a present Hubble parameter). On the other side some cosmologists have preferred that lambda should be close to zero. But, setting lambda to zero is not in accordance with the present observations indicating that omega is in fact of order unity. Now, the main problem is to find out a cancellation mechanism which may cancel at precisely the 123 decimal places. This “ cosmological-constant problem” has been considered in this paper. It is shown that the solution of lambda = f(r) et the Planck’ s scale is of order 10exp70 m-2 and gives values for vacuum energy density and omega exactly equal to predictions of GUTs. On the other side, the same solution of lambda at the cosmological scale is of order 10exp(-53) m-2 and gives values for omega of order unity. Thus, it seems that the cosmological constant problem is solved.

Izvorni jezik
Engleski

Znanstvena područja
Strojarstvo



POVEZANOST RADA


Projekti:
0120025

Ustanove:
Fakultet strojarstva i brodogradnje, Zagreb

Profili:

Avatar Url Dario Novaković (autor)

Avatar Url Branko Novaković (autor)


Citiraj ovu publikaciju:

Novaković, Branko; Novaković, Dario; Novaković, Alen
Cosmological Constant Problem Solution Valid for Both Planck's and Cosmological Scales // Computing Anticipatory Systems: CASYS'05 - Seventh International Conference on Computing Anticipatory Systems (AIP Conference Proceedings / Mathematical and Statistical Phsyics) / Dubois, Daniel (ur.).
Melville (NY): American Institute of Physics (AIP), 2006. str. 144-156 (poster, nije recenziran, sažetak, znanstveni)
Novaković, B., Novaković, D. & Novaković, A. (2006) Cosmological Constant Problem Solution Valid for Both Planck's and Cosmological Scales. U: Dubois, D. (ur.)Computing Anticipatory Systems: CASYS'05 - Seventh International Conference on Computing Anticipatory Systems (AIP Conference Proceedings / Mathematical and Statistical Phsyics).
@article{article, author = {Novakovi\'{c}, Branko and Novakovi\'{c}, Dario and Novakovi\'{c}, Alen}, editor = {Dubois, D.}, year = {2006}, pages = {144-156}, keywords = {Riemann and \#8217, s Geometry, Nondiagonal Line Element, Cosmological Constant Problem, Vacuum Energy, Attractive and Repulsive Gravity.}, isbn = {0735403317}, title = {Cosmological Constant Problem Solution Valid for Both Planck's and Cosmological Scales}, keyword = {Riemann and \#8217, s Geometry, Nondiagonal Line Element, Cosmological Constant Problem, Vacuum Energy, Attractive and Repulsive Gravity.}, publisher = {American Institute of Physics (AIP)}, publisherplace = {Li\`{e}ge, Belgija} }
@article{article, author = {Novakovi\'{c}, Branko and Novakovi\'{c}, Dario and Novakovi\'{c}, Alen}, editor = {Dubois, D.}, year = {2006}, pages = {144-156}, keywords = {Riemann and \#8217, s Geometry, Nondiagonal Line Element, Cosmological Constant Problem, Vacuum Energy, Attractive and Repulsive Gravity.}, isbn = {0735403317}, title = {Cosmological Constant Problem Solution Valid for Both Planck's and Cosmological Scales}, keyword = {Riemann and \#8217, s Geometry, Nondiagonal Line Element, Cosmological Constant Problem, Vacuum Energy, Attractive and Repulsive Gravity.}, publisher = {American Institute of Physics (AIP)}, publisherplace = {Li\`{e}ge, Belgija} }




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