The 13C(α, n)16O reaction is the neutron source for the main component of the s-process. It is is active inside the helium-burning shell of asymptotic giant branch stars, at temperatures ≲ 108 K. In this temperature region, corresponding to an energy interval of 140 − 230 keV, the 13C(α, n)16O cross section is dominated by the −3 keV sub-threshold resonance due to the 6.356 MeV level in 17O. Direct measurements could not establish its contribution owing to the Coulomb barrier between interacting nuclei, strongly reducing the cross section at astrophysical energies. Similarly, indirect measurements and extrapolations yielded inconsistent results, calling for further investigations. The Trojan Horse Method was applied to the 13C(6Li, n16O)d q...
The 13C(α, n)16O reaction determines the dominant neutron source of the sprocess in thermally pulsin...
International audienceThe radiative capture reaction 12 C(α, γ) 16 O plays an important role in heli...
The 12C(α,γ )16O reaction plays an important role in helium burning in massive stars and their evolu...
The 13C(α, n)16O reaction is the neutron source for the main component of the s-process. It is is ac...
The 13C(α, n)16O reaction is the neutron source for the main component of the s-process. It is is ac...
Most of the nuclei in the mass range 90 ≲ A ≲ 208 are produced through the so-called s-process, name...
Most of the nuclei in the mass range 90 ≲ A ≲ 208 are produced through the so-called s-process, name...
The 13C(α, n)16O reaction is considered to be the most important neutron source for the s-process ma...
The reaction 13C(α,n)16O is considered as the main neutron source for s-process in low-mass asymptot...
The 13C(α, n)16O reaction is considered to be the most important neutron source for the s-process ma...
One of the main neutron sources for the astrophysical s process is the reaction 13C(α,n)16O, taking ...
The 13C(α, n)16O reaction determines the dominant neutron source of the sprocess in thermally pulsin...
The radiative capture reaction 12C(α,γ)16O plays an important role in helium burning in massive star...
The 13C(α,n)16O reaction is the prevalent neutron source for the main s-process. The direct measurem...
The 13C(α,n)16O reaction is the prevalent neutron source for the main s-process. The direct measurem...
The 13C(α, n)16O reaction determines the dominant neutron source of the sprocess in thermally pulsin...
International audienceThe radiative capture reaction 12 C(α, γ) 16 O plays an important role in heli...
The 12C(α,γ )16O reaction plays an important role in helium burning in massive stars and their evolu...
The 13C(α, n)16O reaction is the neutron source for the main component of the s-process. It is is ac...
The 13C(α, n)16O reaction is the neutron source for the main component of the s-process. It is is ac...
Most of the nuclei in the mass range 90 ≲ A ≲ 208 are produced through the so-called s-process, name...
Most of the nuclei in the mass range 90 ≲ A ≲ 208 are produced through the so-called s-process, name...
The 13C(α, n)16O reaction is considered to be the most important neutron source for the s-process ma...
The reaction 13C(α,n)16O is considered as the main neutron source for s-process in low-mass asymptot...
The 13C(α, n)16O reaction is considered to be the most important neutron source for the s-process ma...
One of the main neutron sources for the astrophysical s process is the reaction 13C(α,n)16O, taking ...
The 13C(α, n)16O reaction determines the dominant neutron source of the sprocess in thermally pulsin...
The radiative capture reaction 12C(α,γ)16O plays an important role in helium burning in massive star...
The 13C(α,n)16O reaction is the prevalent neutron source for the main s-process. The direct measurem...
The 13C(α,n)16O reaction is the prevalent neutron source for the main s-process. The direct measurem...
The 13C(α, n)16O reaction determines the dominant neutron source of the sprocess in thermally pulsin...
International audienceThe radiative capture reaction 12 C(α, γ) 16 O plays an important role in heli...
The 12C(α,γ )16O reaction plays an important role in helium burning in massive stars and their evolu...