Summarization: An experimental spacing distribution for nuclear levels of mixed spin and parity is derived for 980 levels of 18 different nuclei. The experimental nuclear energy levels, taken from recent literature, were all determined by analyses of particles from (p, p′) and/or (p, α) reactions with magnetic spectrographs. When proper account is taken of the experimental enrgy resolution, the spacing distribution is essentially exponential in character as expected for levels of both parities and mixed spin.Presented on: Nuclear Physics
A microscopic nuclear level-density model is presented. The model is a completely combinatorial (mic...
The Oslo method has been applied to particle-γ coincidences following the Pu239(d,p) reaction to obt...
A level density formula including low-energy rotational levels for nuclei with axially symmetric def...
A statistical analysis of the distribution of level spacings for states with the same spin and parit...
We review our calculated energy-, spin- and parity-dependent nuclear level densities based on the mi...
We review our calculated energy-, spin- and parity-dependent nuclear level densities based...
The nuclear level spacings determined from neutron resonance experiments for nuclei with 20 ≦ A ≦ 14...
A generalization of Wigner's simple model for the distribution of nuclear level spacings is studied....
New neutron transmission data at resonance energies using a $$^{197}$$Au sample were measured using ...
Measurements of the angular distributions of the gamma-rays from the reaction N¹⁵ (p,αɤ)C¹² indicate...
In this paper we present the first systematic analysis of the impact of the populated vs. intrinsic ...
Neutron and proton resonances provide detailed level density information. However, due to experiment...
The knowledge of nuclear reaction rates is important for studying energy production and nucleosynthe...
Heavy nuclei like Uranium (200+ protons / neu-trons) even worse! Info by shooting high-energy neutro...
Models exist that ascribe the nuclear magnetic fields to the presence of a single nucleon whose spin...
A microscopic nuclear level-density model is presented. The model is a completely combinatorial (mic...
The Oslo method has been applied to particle-γ coincidences following the Pu239(d,p) reaction to obt...
A level density formula including low-energy rotational levels for nuclei with axially symmetric def...
A statistical analysis of the distribution of level spacings for states with the same spin and parit...
We review our calculated energy-, spin- and parity-dependent nuclear level densities based on the mi...
We review our calculated energy-, spin- and parity-dependent nuclear level densities based...
The nuclear level spacings determined from neutron resonance experiments for nuclei with 20 ≦ A ≦ 14...
A generalization of Wigner's simple model for the distribution of nuclear level spacings is studied....
New neutron transmission data at resonance energies using a $$^{197}$$Au sample were measured using ...
Measurements of the angular distributions of the gamma-rays from the reaction N¹⁵ (p,αɤ)C¹² indicate...
In this paper we present the first systematic analysis of the impact of the populated vs. intrinsic ...
Neutron and proton resonances provide detailed level density information. However, due to experiment...
The knowledge of nuclear reaction rates is important for studying energy production and nucleosynthe...
Heavy nuclei like Uranium (200+ protons / neu-trons) even worse! Info by shooting high-energy neutro...
Models exist that ascribe the nuclear magnetic fields to the presence of a single nucleon whose spin...
A microscopic nuclear level-density model is presented. The model is a completely combinatorial (mic...
The Oslo method has been applied to particle-γ coincidences following the Pu239(d,p) reaction to obt...
A level density formula including low-energy rotational levels for nuclei with axially symmetric def...