Nanometer-sized diamond grains are commonly found in primitive chondritic meteorites, but their origin is puzzling. Using evidence from atomistic simulation, we establish a mechanism by which nanodiamonds form abundantly in space in a two-stage process involving condensation of vapor to form carbon onions followed by transformation to nanodiamond in an energetic impact. This nonequilibrium process is consistent with common environments in space and invokes the fewest assumptions of any proposed model. Accordingly, our model can explain nanodiamond formation in both presolar and solar environments. The model provides an attractive framework for understanding noble gas incorporation and explains all key features of meteoritic nanodiamond, inc...
Nanodiamond (ND) was the first extrasolar dust phase to be identified in meteorites. However, the 2 ...
The controversial Younger Dryas impact hypothesis suggests that at the onset of the Younger Dryas an...
We report on a concerted effort aimed at understanding the origin and history of the pre-solar nanod...
Although the most abundant type of presolar grain found in meteorites is nanometer-sized diamond ("n...
Clusters of diamond-phase carbon, known as nanodiamonds, exhibit novel mechanical, optical and biolo...
Nanometre-sized diamond has been found in meteorites, protoplanetary nebulae, and interstellar dust...
The model of nanosized diamond particles formation at metastable P-T parameters from fluid is presen...
Nanosized diamond particles in the interstellar space and in the Earth rocks related with water pres...
The perspectives of nanosized diamond particles formation at metastable P-T parameters from organic ...
There are four main types of natural diamonds and related formation processes. The first type compri...
peer reviewedNanometer sized diamond has been found in meteorites, proto-planetary nebulae and inte...
A major cosmic-impact event has been proposed at the onset of the Younger Dryas (YD) cooling episode...
Introduction: In this paper we present new results of our long-term project on investigations of met...
Several interstellar environments produce anomalous microwave emission (AME), with brightness peaks ...
Nanometre-sized diamonds (nanodiamonds) are to date the most abundant presolar grains in primitive ...
Nanodiamond (ND) was the first extrasolar dust phase to be identified in meteorites. However, the 2 ...
The controversial Younger Dryas impact hypothesis suggests that at the onset of the Younger Dryas an...
We report on a concerted effort aimed at understanding the origin and history of the pre-solar nanod...
Although the most abundant type of presolar grain found in meteorites is nanometer-sized diamond ("n...
Clusters of diamond-phase carbon, known as nanodiamonds, exhibit novel mechanical, optical and biolo...
Nanometre-sized diamond has been found in meteorites, protoplanetary nebulae, and interstellar dust...
The model of nanosized diamond particles formation at metastable P-T parameters from fluid is presen...
Nanosized diamond particles in the interstellar space and in the Earth rocks related with water pres...
The perspectives of nanosized diamond particles formation at metastable P-T parameters from organic ...
There are four main types of natural diamonds and related formation processes. The first type compri...
peer reviewedNanometer sized diamond has been found in meteorites, proto-planetary nebulae and inte...
A major cosmic-impact event has been proposed at the onset of the Younger Dryas (YD) cooling episode...
Introduction: In this paper we present new results of our long-term project on investigations of met...
Several interstellar environments produce anomalous microwave emission (AME), with brightness peaks ...
Nanometre-sized diamonds (nanodiamonds) are to date the most abundant presolar grains in primitive ...
Nanodiamond (ND) was the first extrasolar dust phase to be identified in meteorites. However, the 2 ...
The controversial Younger Dryas impact hypothesis suggests that at the onset of the Younger Dryas an...
We report on a concerted effort aimed at understanding the origin and history of the pre-solar nanod...