Direct measurements of reaction cross-sections at astrophysical energies often require the use of solid targets able to withstand high ion beam currents for extended periods of time. Thus, monitoring target thickness, isotopic composition, and target stoichiometry during data taking is critical to account for possible target modifications and to reduce uncertainties in the final cross-section results. A common technique used for these purposes is the Nuclear Resonant Reaction Analysis (NRRA), which however requires that a narrow resonance be available inside the dynamic range of the accelerator used. In cases when this is not possible, as for example the 13C (α, n) 16O reaction recently studied at low energies at the Laboratory for Undergro...
The 12C(p,γ) and 13C(p,γ) reaction cross sections are currently under investigation in the low-backg...
The 12C(p, γ)13N reaction cross section is currently under investigation in the low-background envir...
The 12C(p, γ)13N reaction cross section is currently under investigation in the low-background envir...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of s...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
The 13C(α, n)16O reaction is the main neutron source for the s-process in low mass AGB stars. Althou...
The 13C(α, n)16O reaction is the main neutron source for the s-process in low mass AGB stars. Althou...
The 13C(α, n)16O reaction is the main neutron source for the s-process in low mass AGB stars. Althou...
The 12C(p,γ) and 13C(p,γ) reaction cross sections are currently under investigation in the low-backg...
The 12C(p,γ) and 13C(p,γ) reaction cross sections are currently under investigation in the low-backg...
The 12C(p, γ)13N reaction cross section is currently under investigation in the low-background envir...
The 12C(p, γ)13N reaction cross section is currently under investigation in the low-background envir...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of s...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
Direct measurements of reaction cross-sections at astrophysical energies often require the use of so...
The 13C(α, n)16O reaction is the main neutron source for the s-process in low mass AGB stars. Althou...
The 13C(α, n)16O reaction is the main neutron source for the s-process in low mass AGB stars. Althou...
The 13C(α, n)16O reaction is the main neutron source for the s-process in low mass AGB stars. Althou...
The 12C(p,γ) and 13C(p,γ) reaction cross sections are currently under investigation in the low-backg...
The 12C(p,γ) and 13C(p,γ) reaction cross sections are currently under investigation in the low-backg...
The 12C(p, γ)13N reaction cross section is currently under investigation in the low-background envir...
The 12C(p, γ)13N reaction cross section is currently under investigation in the low-background envir...