The elements between iron and strontium are largely produced by the weak s-process occurring in massive stars during the late stages of convective core He burning and the convective shell carbon burning with the primary source of neutrons coming from the reaction 22Ne(α,n)25Mg. However, shell carbon burning may produce hot enough temperatures to activate 12C(12C,n)23Mg as a significant neutron source. Few studies have been done on this reaction, and the extrapolation from experimental data down to the relevant astrophysical energies is uncertain. Recent studies performed at the Nuclear Science Laboratory of Notre Dame aim to improve the existing reaction data using new experimental techniques as well as provide a more reliable extrapolation...
Neutrons produced by the carbon fusion reaction ¹²C(¹²C,n)²³Mg play an important role in stellar nuc...
Over the last 40 years, the 12C +12C fusion reaction has been the subject of considerable experiment...
Carbon burning takes place in stars at deep sub-Coulomb energies through the 12C(12C,α)20Ne and 12C(...
The elements between iron and strontium are largely produced by the weak s-process occurring in mass...
The 12C(12C,n) reaction (Q=-2.6 MeV) is a potential neutron source for the weak s-process occurring ...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
Neutrons produced by the carbon fusion reaction C12(C12,n)Mg23 play an important role in stellar nuc...
The contribution by massive stars (M> 9M) to the weak s-process component of the solar sys-tem ab...
Neutrons produced by the carbon fusion reaction ¹²C(¹²C,n)²³Mg play an important role in stellar nuc...
Neutrons produced by the carbon fusion reaction ¹²C(¹²C,n)²³Mg play an important role in stellar nuc...
Neutrons produced by the carbon fusion reaction ¹²C(¹²C,n)²³Mg play an important role in stellar nuc...
Neutrons produced by the carbon fusion reaction ¹²C(¹²C,n)²³Mg play an important role in stellar nuc...
Over the last 40 years, the 12C +12C fusion reaction has been the subject of considerable experiment...
Carbon burning takes place in stars at deep sub-Coulomb energies through the 12C(12C,α)20Ne and 12C(...
The elements between iron and strontium are largely produced by the weak s-process occurring in mass...
The 12C(12C,n) reaction (Q=-2.6 MeV) is a potential neutron source for the weak s-process occurring ...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
Despite much effort in the past decades, the C-burning reaction rate is uncertain by several orders ...
Neutrons produced by the carbon fusion reaction C12(C12,n)Mg23 play an important role in stellar nuc...
The contribution by massive stars (M> 9M) to the weak s-process component of the solar sys-tem ab...
Neutrons produced by the carbon fusion reaction ¹²C(¹²C,n)²³Mg play an important role in stellar nuc...
Neutrons produced by the carbon fusion reaction ¹²C(¹²C,n)²³Mg play an important role in stellar nuc...
Neutrons produced by the carbon fusion reaction ¹²C(¹²C,n)²³Mg play an important role in stellar nuc...
Neutrons produced by the carbon fusion reaction ¹²C(¹²C,n)²³Mg play an important role in stellar nuc...
Over the last 40 years, the 12C +12C fusion reaction has been the subject of considerable experiment...
Carbon burning takes place in stars at deep sub-Coulomb energies through the 12C(12C,α)20Ne and 12C(...