Interplanetary dust particles (IDPs) collected in the Earth s stratosphere contain high abundances of submicrometer amorphous silicates known as GEMS grains. From their birth as condensates in the outflows of oxygen-rich evolved stars, processing in interstellar space, and incorporation into disks around new stars, amorphous silicates predominate in most astrophysical environments. Amorphous silicates were a major building block of our Solar System and are prominent in infrared spectra of comets. Anhydrous interplanetary dust particles (IDPs) thought to derive from comets contain abundant amorphous silicates known as GEMS (glass with embedded metal and sulfides) grains. GEMS grains have been proposed to be isotopically and chemically homoge...
Interplanetary dust pervades the inner Solar System, giving rise to a prominent glow above the horiz...
Glass with embedded metal and sulfides (GEMS) is a major component of chondritic porous interplaneta...
Many meteorites contain small quantities of microscopic particles with unusual mixes of isotopes. Th...
Anhydrous interplanetary dust particles (IDPs) of cometary origin contain abundant materials that fo...
GEMS are to the outer solar system what chondrules are to the inner solar system. Ten years after it...
The provenance of GEMS (glass with embedded metal and sulfides) in cometary type interplanetary dust...
Amorphous silicates in chondritic porous interplanetary dust particles (CP-IDPs) coming from comets ...
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...
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...
The comparison of interstellar, circumstellar and primitive solar nebula silicates has led to a sign...
In the paper entitled 'The shape and composition of interstellar silicate grains' (A & A, 462, 667-6...
Presolar, circumstellar silicates have been positively identified by their highly anomalous oxygen i...
Despite their micrometer-scale dimensions and nanogram masses, chondritic porous interplanetary dust...
Interplanetary dust pervades the inner Solar System, giving rise to a prominent glow above the horiz...
Glass with embedded metal and sulfides (GEMS) is a major component of chondritic porous interplaneta...
Many meteorites contain small quantities of microscopic particles with unusual mixes of isotopes. Th...
Anhydrous interplanetary dust particles (IDPs) of cometary origin contain abundant materials that fo...
GEMS are to the outer solar system what chondrules are to the inner solar system. Ten years after it...
The provenance of GEMS (glass with embedded metal and sulfides) in cometary type interplanetary dust...
Amorphous silicates in chondritic porous interplanetary dust particles (CP-IDPs) coming from comets ...
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...
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...
The comparison of interstellar, circumstellar and primitive solar nebula silicates has led to a sign...
In the paper entitled 'The shape and composition of interstellar silicate grains' (A & A, 462, 667-6...
Presolar, circumstellar silicates have been positively identified by their highly anomalous oxygen i...
Despite their micrometer-scale dimensions and nanogram masses, chondritic porous interplanetary dust...
Interplanetary dust pervades the inner Solar System, giving rise to a prominent glow above the horiz...
Glass with embedded metal and sulfides (GEMS) is a major component of chondritic porous interplaneta...
Many meteorites contain small quantities of microscopic particles with unusual mixes of isotopes. Th...