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The origin of GEMS in IDPs as deduced from microstructural evolution of amorphous silicates with annealing

机译:IDMS中GEMS的起源是通过退火过程中无定形硅酸盐的微观结构演变得出的

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摘要

We present laboratory studies of the micro-structural evolution of an amorphous ferro-magnesian silicate, of olivine composition, following thermal annealing under vacuum. Annealing under vacuum was performed at temperatures ranging from 870 to 1020 K. After annealing spheroidal metallic nano-particles (2-50 nm) are found within the silicate films. We interpret this microstructure in terms of a reduction of the initial amorphous silicate FeO component, because of the carbon-rich partial pressure in the furnace due to pumping mechanism. Annealing in a controlled oxygen-rich atmosphere confirms this interpretation. The observed microstructures closely resemble those of the GEMS (Glass with Embedded Metal and Sulphides) found in chondritic IDPs (Interplanetary Dust Particles). Since IDPs contain abundant carbonaceous matter, a solid-state reduction reaction may have occurred during heating in the hot inner regions of the proto-solar disc. Related to this, the presence of forsterite grains grown from the amorphous precursor material clearly demonstrates that condensation from gaseous species is not required to explain the occurrence of forsterite around young protostars and in comets. Forsterite grains in these environments can be formed directly in the solid phase by thermal annealing of amorphous ferro-magnesian silicates under reducing conditions.
机译:我们目前在真空下进行热退火后,对橄榄石组成的非晶铁镁硅酸盐的微观结构演变进行了实验室研究。真空退火是在870至1020 K的温度范围内进行的。退火后,在硅酸盐膜中发现了球形金属纳米颗粒(2-50 nm)。我们通过减少初始非晶态硅酸盐FeO组分来解释这种微观结构,这是由于泵送机制导致炉中富碳分压的缘故。在受控的富氧气氛中进行退火可以证实这一解释。观察到的微观结构与软骨状IDP(行星际尘埃颗粒)中发现的GEMS(嵌入金属和硫化物的玻璃)的微观结构非常相似。由于IDP包含丰富的碳质物质,因此在加热过程中,原太阳能盘的热内部区域可能发生固态还原反应。与此相关的是,由无定形前体材料生长的镁橄榄石晶粒的存在清楚地表明,不需要气态物种的凝结来解释年轻原恒星周围和彗星中镁橄榄石的出现。这些环境中的镁橄榄石晶粒可通过在还原条件下对非晶铁镁硅酸盐进行热退火而直接在固相中形成。

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