Although they are but a small fraction of the mass ejected in core-collapse supernovae, neutrino-driven winds (NDWs) from nascent proto-neutron stars (PNSs) have the potential to contribute significantly to supernova nucleosynthesis. In previous works, the NDW has been implicated as a possible source of r-process and light p-process isotopes. In this paper we present time-dependent hydrodynamic calculations of nucleosynthesis in the NDW which include accurate weak interaction physics coupled to a full nuclear reaction network. Using two published models of PNS neutrino luminosities, we predict the contribution of the NDW to the integrated nucleosynthetic yield of the entire supernova. For the neutrino luminosity histories considered, no tru...
Almost all of the 3 {center dot} 10{sup 53} ergs released in a core-collapse supernova is carried of...
The lighter heavy elements of the first r-process peak, between strontium and silver, can be synthes...
We present a nucleosynthesis study on the neutrino-driven wind after neutron star merger. Post-proce...
A promising astrophysical site to produce the lighter heavy elements of the first r-process peak (Z ...
One of the outstanding unsolved riddles of nuclear astrophysics is the origin of the so called ``p-p...
Neutrino-driven winds following core-collapse supernova explosions are an exciting astrophysical sit...
Baryonic outflows from proto-neutron stars formed in core-collapse supernova explosions are one of t...
Solving Newtonian steady-state wind equations while considering the accurate weak interaction rates ...
Heavy elements like gold, platinum or uranium are produced in the r-process, which needs neutron-ric...
We present a comprehensive nucleosynthesis study of the neutrino-driven wind in the aftermath of a b...
The r-process is supposed to be a primary process which assembles heavy nuclei from a photo-dissocia...
We test the hypothesis that the observed first-peak (Sr, Y, Zr) and second-peak (Ba) s-process eleme...
The hot and dense proto-neutron star (PNS) born subsequent to core-collapse in a type II supernova e...
Heavy elements like gold, platinum or uranium are produced in the r-process, which needs neutron-ric...
The origin of the heaviest elements in our Universe is an unresolved mystery. We know that half of t...
Almost all of the 3 {center dot} 10{sup 53} ergs released in a core-collapse supernova is carried of...
The lighter heavy elements of the first r-process peak, between strontium and silver, can be synthes...
We present a nucleosynthesis study on the neutrino-driven wind after neutron star merger. Post-proce...
A promising astrophysical site to produce the lighter heavy elements of the first r-process peak (Z ...
One of the outstanding unsolved riddles of nuclear astrophysics is the origin of the so called ``p-p...
Neutrino-driven winds following core-collapse supernova explosions are an exciting astrophysical sit...
Baryonic outflows from proto-neutron stars formed in core-collapse supernova explosions are one of t...
Solving Newtonian steady-state wind equations while considering the accurate weak interaction rates ...
Heavy elements like gold, platinum or uranium are produced in the r-process, which needs neutron-ric...
We present a comprehensive nucleosynthesis study of the neutrino-driven wind in the aftermath of a b...
The r-process is supposed to be a primary process which assembles heavy nuclei from a photo-dissocia...
We test the hypothesis that the observed first-peak (Sr, Y, Zr) and second-peak (Ba) s-process eleme...
The hot and dense proto-neutron star (PNS) born subsequent to core-collapse in a type II supernova e...
Heavy elements like gold, platinum or uranium are produced in the r-process, which needs neutron-ric...
The origin of the heaviest elements in our Universe is an unresolved mystery. We know that half of t...
Almost all of the 3 {center dot} 10{sup 53} ergs released in a core-collapse supernova is carried of...
The lighter heavy elements of the first r-process peak, between strontium and silver, can be synthes...
We present a nucleosynthesis study on the neutrino-driven wind after neutron star merger. Post-proce...