Amorphous silicates in chondritic porous interplanetary dust particles (CP-IDPs) coming from comets are dominated by glass with embedded metal and sulfides (GEMS). GEMS grains are submicron-sized rounded objects (typically 100-500) nm in diameter) with anaometer-sized (10-50 nm) Fe-Ni metal and sulfide grains embedded in an amorphous silicate matrix. Several formation processes for GEMS grains have been proposed so far, but these models are still being debated [2-5]. Bradley et al. proposed that GEMS grains are interstellar silicate dust that survived various metamorphism or alteration processes in the protoplanetary disk and that they are amorphiation products of crystalline silicates in the interstellar medium by sputter-deposition of cos...
GEMS (Glass Embedded with Metals and Sulfides) are highly enigmatic yet common components of anhydro...
In the paper entitled 'The shape and composition of interstellar silicate grains' (A & A, 462, 667-6...
Despite their micrometer-scale dimensions and nanogram masses, chondritic porous interplanetary dust...
Interplanetary dust particles (IDPs) collected in the Earth s stratosphere contain high abundances o...
GEMS are to the outer solar system what chondrules are to the inner solar system. Ten years after it...
Anhydrous interplanetary dust particles (IDPs) of cometary origin contain abundant materials that fo...
Chondritic-porous interplanetary dust particles (CP IDPs) exhibit strongly heterogeneous and unequil...
Amorphous silicates in meteoritic samples are significant as potential surviving interstellar dust f...
Presolar, circumstellar silicates have been positively identified by their highly anomalous oxygen i...
The provenance of GEMS (glass with embedded metal and sulfides) in cometary type interplanetary dust...
The Ninth Symposium on Polar Science/Ordinary sessions: [OA] Antarctic meteorites / Hayabusa, Wed. 5...
Glass with embedded metal and sulfides (GEMS) is a major component of chondritic porous interplaneta...
The solar system formed from interstellar dust and gas in a molecular cloud. Astronomical observatio...
Manuscript submitted to Proceedings of the National Academy of ScienceThe solar system formed from i...
We present laboratory studies of the micro-structural evolution of an amorphous ferro-magnesian sili...
GEMS (Glass Embedded with Metals and Sulfides) are highly enigmatic yet common components of anhydro...
In the paper entitled 'The shape and composition of interstellar silicate grains' (A & A, 462, 667-6...
Despite their micrometer-scale dimensions and nanogram masses, chondritic porous interplanetary dust...
Interplanetary dust particles (IDPs) collected in the Earth s stratosphere contain high abundances o...
GEMS are to the outer solar system what chondrules are to the inner solar system. Ten years after it...
Anhydrous interplanetary dust particles (IDPs) of cometary origin contain abundant materials that fo...
Chondritic-porous interplanetary dust particles (CP IDPs) exhibit strongly heterogeneous and unequil...
Amorphous silicates in meteoritic samples are significant as potential surviving interstellar dust f...
Presolar, circumstellar silicates have been positively identified by their highly anomalous oxygen i...
The provenance of GEMS (glass with embedded metal and sulfides) in cometary type interplanetary dust...
The Ninth Symposium on Polar Science/Ordinary sessions: [OA] Antarctic meteorites / Hayabusa, Wed. 5...
Glass with embedded metal and sulfides (GEMS) is a major component of chondritic porous interplaneta...
The solar system formed from interstellar dust and gas in a molecular cloud. Astronomical observatio...
Manuscript submitted to Proceedings of the National Academy of ScienceThe solar system formed from i...
We present laboratory studies of the micro-structural evolution of an amorphous ferro-magnesian sili...
GEMS (Glass Embedded with Metals and Sulfides) are highly enigmatic yet common components of anhydro...
In the paper entitled 'The shape and composition of interstellar silicate grains' (A & A, 462, 667-6...
Despite their micrometer-scale dimensions and nanogram masses, chondritic porous interplanetary dust...