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Circumstellar Chemistry and Dust from Dead Stars in Meteorites

机译:陨星的恒星化学和尘埃尘埃

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This chapter briefly introduces the chemistry in circumstellar envelopes (CSE) around old, mass-losing stars. The focus is on stars with initial masses of one to eight solar masses that evolve into red giant stars with a few hundred times the solar radius, and which develop circumstellar shells several hundred times their stellar radii. The chemistry in the innermost circumstellar shell adjacent to the photosphere is dominated by thermochemistry, whereas photochemistry driven by interstellar UV radiation dominates in the outer shell. The conditions in the CSE allow mineral condensation within a few stellar radii, and these grains are important sources of interstellar dust. Micron-sized dust grains that formed in the CSE of red giant stars have been isolated from certain meteorites and their elemental and isotopic chemistry provides detailed insights into nucleosynthesis processes and dust formation conditions of their parent stars, which died before the solar system was born 4.56 Ga ago.
机译:本章简要介绍了质量下降的旧恒星周围的星际包膜(CSE)中的化学过程。重点是初始质量为1至8个太阳质量的恒星,这些质量会演变成红色的巨型恒星,其太阳半径是太阳半径的数百倍,并且会形成几倍于其恒星半径的周向壳。与光球相邻的最里面的星际壳中的化学物质以热化学为主,而由星际紫外线辐射驱动的光化学则以外壳为主。 CSE中的条件允许矿物凝结在几个恒星半径之内,这些颗粒是星际尘埃的重要来源。已从某些陨石中分离出了红色巨星CSE中形成的微米级尘埃颗粒,它们的元素和同位素化学性质为它们的母恒星的核合成过程和尘埃形成条件提供了详细的见识,这些恒星在太阳系诞生之前就已死亡4.56嘎前。

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