International audienceIn apatite (U-Th)/He thermochronology the helium distribution in a crystal is a function of the simultaneous processes of radiogenic production, thermally activated volume diffusion and the ejection of He caused by long alpha stopping distances. These processes are further complicated by zonation of U, Th and Sm within the grain and implantation of 4He from neighboring U-Th-Sm bearing minerals. We use a refined version of the 3D Monte Carlo diffusion code of Gautheron and Tassan-Got (2010) to simulate the interplay between ejection and diffusion with or without zonation, ejection and abrasion for a suite of thermal histories. We examine the phenomenon of over-correction produced by the alpha ejection correction paramet...
Helium diffusion from apatite is a sensitive function of the volume fraction of radiation damage to ...
(U–Th)/He ages reflect the combined effects of He (α particles) loss due to diffusion and He ingrowt...
International audienceIn low temperature thermochronology, reliable interpretation of (U-Th)/He data...
In apatite (U–Th)/He thermochronology the helium distribution in a crystal is a function of the simu...
Recent data on He diffusion challenge the temperature sensitivity of apatite (U–Th)/He thermochronol...
This contribution proposes a number of methodological refinements for accounting for ejection of ene...
A mathematical framework for quantitative evaluation of alpha-stopping effects on (U-Th)/He ages has...
We describe a new numerical inversion approach to deriving thermal history information from a range ...
AbstractWe describe a new numerical inversion approach to deriving thermal history information from ...
International audience(UTh)/He ages reflect the combined effects of He (á particles) loss due to di...
AbstractOver the last decade major progress has been made in developing both the theoretical and pra...
Over the last decade major progress has been made in developing both the theoretical and practical a...
International audienceApatite (U-Th-Sm)/He (AHe) thermochronometry is widely used to constrain therm...
Helium diffusion from apatite is a sensitive function of the volume fraction of radiation damage to ...
(U–Th)/He ages reflect the combined effects of He (α particles) loss due to diffusion and He ingrowt...
International audienceIn low temperature thermochronology, reliable interpretation of (U-Th)/He data...
In apatite (U–Th)/He thermochronology the helium distribution in a crystal is a function of the simu...
Recent data on He diffusion challenge the temperature sensitivity of apatite (U–Th)/He thermochronol...
This contribution proposes a number of methodological refinements for accounting for ejection of ene...
A mathematical framework for quantitative evaluation of alpha-stopping effects on (U-Th)/He ages has...
We describe a new numerical inversion approach to deriving thermal history information from a range ...
AbstractWe describe a new numerical inversion approach to deriving thermal history information from ...
International audience(UTh)/He ages reflect the combined effects of He (á particles) loss due to di...
AbstractOver the last decade major progress has been made in developing both the theoretical and pra...
Over the last decade major progress has been made in developing both the theoretical and practical a...
International audienceApatite (U-Th-Sm)/He (AHe) thermochronometry is widely used to constrain therm...
Helium diffusion from apatite is a sensitive function of the volume fraction of radiation damage to ...
(U–Th)/He ages reflect the combined effects of He (α particles) loss due to diffusion and He ingrowt...
International audienceIn low temperature thermochronology, reliable interpretation of (U-Th)/He data...