International audienceMineralogical studies of deep-seated xenoliths and mineral inclusions in diamonds indicate that there is significant variability in oxygen fugacity within the Earth's upper mantle. This variability is consistent both with the occurrence of reduced (methane-bearing) or oxidized (CO2/carbonate-bearing) fluids. Invariably, direct sampling of reduced deep fluids is not possible as they are unquenchable and re-equilibrate with either the surrounding mantle or are affected by degassing. Key information about the nature of such fluids might be found in diamond if it were possible to study a population related to a single source. Usually, diamonds within a kimberlite pipe have different parageneses and can be shown to have for...
International audienceDiamonds are unrivalled in their ability to record the mantle carbon cycle and...
Fluid inclusions trapped in fast-growing diamonds provide a unique opportunity to examine the origin...
International audienceDiamonds are unrivalled in their ability to record the mantle carbon cycle and...
International audienceMineralogical studies of deep-seated xenoliths and mineral inclusions in diamo...
Mineralogical studies of deep-seated xenoliths and mineral inclusions in diamonds indicate that ther...
The carbon and nitrogen isotope values of mantle xenoliths and xenocrysts are used to trace the cycl...
The carbon and nitrogen isotope values of mantle xenoliths and xenocrysts are used to trace the cycl...
Sublithospheric diamonds that sample the transition zone and uppermost lower mantle provide a unique...
A technique for the routine determination of the nitrogen contents and the δ15N and δ13C values of d...
Nitrogen is fundamental to the evolution of Earth and the life it supports, but for reasons poorly u...
Analyses of mineral inclusions, carbon isotopes, nitrogen contents and nitrogen aggregation states i...
Diamonds can form in a number of different ways. Physical and chemical properties of diamonds classi...
Diamonds can form in a number of different ways. Physical and chemical properties of diamonds classi...
International audienceDiamond, as the deepest sample available for study, provides a unique opportun...
Sublithospheric (ultra-deep) diamonds provide a unique window into the deepest parts of Earth's mant...
International audienceDiamonds are unrivalled in their ability to record the mantle carbon cycle and...
Fluid inclusions trapped in fast-growing diamonds provide a unique opportunity to examine the origin...
International audienceDiamonds are unrivalled in their ability to record the mantle carbon cycle and...
International audienceMineralogical studies of deep-seated xenoliths and mineral inclusions in diamo...
Mineralogical studies of deep-seated xenoliths and mineral inclusions in diamonds indicate that ther...
The carbon and nitrogen isotope values of mantle xenoliths and xenocrysts are used to trace the cycl...
The carbon and nitrogen isotope values of mantle xenoliths and xenocrysts are used to trace the cycl...
Sublithospheric diamonds that sample the transition zone and uppermost lower mantle provide a unique...
A technique for the routine determination of the nitrogen contents and the δ15N and δ13C values of d...
Nitrogen is fundamental to the evolution of Earth and the life it supports, but for reasons poorly u...
Analyses of mineral inclusions, carbon isotopes, nitrogen contents and nitrogen aggregation states i...
Diamonds can form in a number of different ways. Physical and chemical properties of diamonds classi...
Diamonds can form in a number of different ways. Physical and chemical properties of diamonds classi...
International audienceDiamond, as the deepest sample available for study, provides a unique opportun...
Sublithospheric (ultra-deep) diamonds provide a unique window into the deepest parts of Earth's mant...
International audienceDiamonds are unrivalled in their ability to record the mantle carbon cycle and...
Fluid inclusions trapped in fast-growing diamonds provide a unique opportunity to examine the origin...
International audienceDiamonds are unrivalled in their ability to record the mantle carbon cycle and...