Primordial nucleosynthesis is considered a success story of the standard big bang (SBB) cosmology. The cosmological and elementary particle physics parameters are believed to be severely constrained by the requirement of correct abundances of light elements. We explore nucleosynthesis in a class of models very different from SBB. In these models the cosmological scale factor increases linearly with time right through the period during which nucleosynthesis occurs till the present. It turns out that weak interactions remain in thermal equilibrium upto temperatures which are two orders of magnitude lower than the corresponding (weak interaction decoupling) temperature in SBB. Inverse beta decay of the proton can ensure adequate production of ...
The fundamental physical processes that govern the Big Bang nucleosynthesis (BBN) have been studied....
The role of neutrinos in big bang nucleosynthesis is discussed. The bounds on the number of neutrino...
We study primordial nucleosynthesis abundance yields for assumed ranges of cosmological lepton numbe...
Primordial nucleosynthesis is a success story of the standard big bang (SBB) cosmology. We explore n...
An introductory review of the early evolution of the Universe relevant to the primordial synthesis o...
We have recently considered cosmologies in which the Universal scale factor varies as a power of the...
We review the Cosmology and Physics underlying Primordial Nucleosynthesis and survey current observa...
During its hot, dense, early evolution the Universe was a primordial nuclear reactor, synthesizing t...
For a brief time in its early evolution the Universe was a cosmic nuclear reactor. The expansion and...
The predictions of Standard Big Bang Nucleosynthesis are summarized and compared with observations o...
The current of status of big bang nucleosynthesis is reviewed and the concordance between theory and...
Primordial nucleosynthesis is rightly hailed as one of the great successes of the standard cosmologi...
We study big bang nucleosynthesis in the presence of large mass scale, nonlinear entropy fluctuation...
The Hubble expansion of galaxies, the $2.73\dK$ blackbody radiation background and the cosmic abunda...
Big-Bang nucleosynthesis (BBN) offers the deepest reliable probe of the early Universe, being based ...
The fundamental physical processes that govern the Big Bang nucleosynthesis (BBN) have been studied....
The role of neutrinos in big bang nucleosynthesis is discussed. The bounds on the number of neutrino...
We study primordial nucleosynthesis abundance yields for assumed ranges of cosmological lepton numbe...
Primordial nucleosynthesis is a success story of the standard big bang (SBB) cosmology. We explore n...
An introductory review of the early evolution of the Universe relevant to the primordial synthesis o...
We have recently considered cosmologies in which the Universal scale factor varies as a power of the...
We review the Cosmology and Physics underlying Primordial Nucleosynthesis and survey current observa...
During its hot, dense, early evolution the Universe was a primordial nuclear reactor, synthesizing t...
For a brief time in its early evolution the Universe was a cosmic nuclear reactor. The expansion and...
The predictions of Standard Big Bang Nucleosynthesis are summarized and compared with observations o...
The current of status of big bang nucleosynthesis is reviewed and the concordance between theory and...
Primordial nucleosynthesis is rightly hailed as one of the great successes of the standard cosmologi...
We study big bang nucleosynthesis in the presence of large mass scale, nonlinear entropy fluctuation...
The Hubble expansion of galaxies, the $2.73\dK$ blackbody radiation background and the cosmic abunda...
Big-Bang nucleosynthesis (BBN) offers the deepest reliable probe of the early Universe, being based ...
The fundamental physical processes that govern the Big Bang nucleosynthesis (BBN) have been studied....
The role of neutrinos in big bang nucleosynthesis is discussed. The bounds on the number of neutrino...
We study primordial nucleosynthesis abundance yields for assumed ranges of cosmological lepton numbe...