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Cold condensation of dust in the ISM
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The condensation of complex silicates with pyroxene and olivine composition at conditions prevailing in molecular clouds has been experimentally studied. For this purpose, molecular species comprising refractory elements were forced to accrete on cold substrates representing the cold surfaces of surviving dust grains in the interstellar medium. The efficient formation of amorphous and homogeneous magnesium iron silicates at temperatures of about 12 K has been monitored by IR spectroscopy. The gaseous precursors of such condensation processes in the interstellar medium are formed by erosion of dust grains in supernova shock waves. In the laboratory, we have evaporated glassy silicate dust analogs and embedded the released species in neon ice matrices that have been studied spectroscopically to identify the molecular precursors of the condensing solid silicates. A sound coincidence between the 10 micron band of the interstellar silicates and the 10 micron band of the low-temperature siliceous condensates can be noted.
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Cited by 1 Pith paper
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Origins of Carbon Dust in a JWST-Observed Primeval Galaxy at $z\sim$6.7
For the z~6.7 galaxy JADES-GS-z6-0, matching its UV bump, UV slope, and Balmer decrement requires either fast interstellar dust growth with 10% supernova dust condensation or 73% supernova condensation with no growth.
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