Molecular dynamics (MD) methods are used to study nanosized helium (He) bubble coalescence process in tungsten (W) at various temperatures relevant to fusion conditions, on an atomistic scale. Bubble coalescence in W is observed at a higher temperature and He/V ratio, while the calculated internal bubble pressure due to virial stress increases with the increase in the He/V ratio; bubble coalescence is significantly dependent on the bubble distance. In these MD simulations, coalescence occurs, only when the surface distance between the two bubbles is equal to 1a0, where a0 denotes the lattice constant and is approximately 0.317 nm at 2100 K. On the other hand, a bubble diameter between 1a0 and 3a0 may have relatively limited effect on the co...
Magnetic confinement fusion is a promising technology for electricity production due to available fu...
International audienceIn fusion devices, extreme fluxes of helium (He) and hydrogen (H) are expected...
International audienceIn fusion devices, extreme fluxes of helium (He) and hydrogen (H) are expected...
Molecular dynamics simulations have been used to study plasma material interactions to better unders...
Tungsten is a leading candidate material for the diverter in future nuclear fusion reactors. Previou...
Understanding the interaction mechanisms between low-energy helium plasma and solid materials has si...
We have investigated the effects of helium ion irradiation energy and sample temperature on the perf...
Abstract Helium diffusion, clustering and bubble nucleation and growth is modelled using the finite ...
In fusion reactor environment, helium bubble acts as a crucial inducement to the performance degrada...
In fusion reactor environment, helium bubble acts as a crucial inducement to the performance degrada...
In fusion reactor environment, helium bubble acts as a crucial inducement to the performance degrada...
International audienceHelium diffusion, clustering and bubble nucleation and growth is modelled usin...
International audienceHelium diffusion, clustering and bubble nucleation and growth is modelled usin...
International audienceHelium diffusion, clustering and bubble nucleation and growth is modelled usin...
International audienceIn fusion devices, extreme fluxes of helium (He) and hydrogen (H) are expected...
Magnetic confinement fusion is a promising technology for electricity production due to available fu...
International audienceIn fusion devices, extreme fluxes of helium (He) and hydrogen (H) are expected...
International audienceIn fusion devices, extreme fluxes of helium (He) and hydrogen (H) are expected...
Molecular dynamics simulations have been used to study plasma material interactions to better unders...
Tungsten is a leading candidate material for the diverter in future nuclear fusion reactors. Previou...
Understanding the interaction mechanisms between low-energy helium plasma and solid materials has si...
We have investigated the effects of helium ion irradiation energy and sample temperature on the perf...
Abstract Helium diffusion, clustering and bubble nucleation and growth is modelled using the finite ...
In fusion reactor environment, helium bubble acts as a crucial inducement to the performance degrada...
In fusion reactor environment, helium bubble acts as a crucial inducement to the performance degrada...
In fusion reactor environment, helium bubble acts as a crucial inducement to the performance degrada...
International audienceHelium diffusion, clustering and bubble nucleation and growth is modelled usin...
International audienceHelium diffusion, clustering and bubble nucleation and growth is modelled usin...
International audienceHelium diffusion, clustering and bubble nucleation and growth is modelled usin...
International audienceIn fusion devices, extreme fluxes of helium (He) and hydrogen (H) are expected...
Magnetic confinement fusion is a promising technology for electricity production due to available fu...
International audienceIn fusion devices, extreme fluxes of helium (He) and hydrogen (H) are expected...
International audienceIn fusion devices, extreme fluxes of helium (He) and hydrogen (H) are expected...