Energetic ions deposit their energy into a target material through elastic and inelastic processes: termed nuclear and electronic energy loss. In SiC [silicon carbide], these two processes are coupled and often competing, where nuclear energy loss generates defects and disorder, and electronic energy loss anneals the material. This work examines the relationship between these energy deposition processes and their impact on single crystal, 3C- and 4H-SiC microstructure via intermediate energy ion irradiations. With increasing incident ion atomic mass, decoupling between the two processes takes place, and inelastic energy deposition becomes less effective at inducing in-cascade annealing. Further, there are thresholds in electronic energy los...
We present a numerical study on swift ion induced effects in crystalline 3C silicon carbide (SiC) by...
A good understanding of the chemical disorder in silicon carbide (SiC) after ion irradiation is cruc...
Expérience GANIL/ARIBEInternational audienceThe healing effect of intense electronic energy depositi...
The objective of this thesis work is to gain better understanding of ion-solid interaction in the en...
A long-standing objective in materials research is to effectively heal fabrication defects or to rem...
A long-standing objective in materials research is to effectively heal fabrication defects or to rem...
Understanding how energy deposited in electronic and atomic subsystems may affect defect dynamics is...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
We present a numerical study on swift ion induced effects in crystalline 3C silicon carbide (SiC) by...
We present a numerical study on swift ion induced effects in crystalline 3C silicon carbide (SiC) by...
A good understanding of the chemical disorder in silicon carbide (SiC) after ion irradiation is cruc...
Expérience GANIL/ARIBEInternational audienceThe healing effect of intense electronic energy depositi...
The objective of this thesis work is to gain better understanding of ion-solid interaction in the en...
A long-standing objective in materials research is to effectively heal fabrication defects or to rem...
A long-standing objective in materials research is to effectively heal fabrication defects or to rem...
Understanding how energy deposited in electronic and atomic subsystems may affect defect dynamics is...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
International audienceIonizing events can lead to panoply of irradiation effects, and in silicon car...
We present a numerical study on swift ion induced effects in crystalline 3C silicon carbide (SiC) by...
We present a numerical study on swift ion induced effects in crystalline 3C silicon carbide (SiC) by...
A good understanding of the chemical disorder in silicon carbide (SiC) after ion irradiation is cruc...
Expérience GANIL/ARIBEInternational audienceThe healing effect of intense electronic energy depositi...