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Monte Carlo Simulation for the formation of Interstellar Grain Mantle

机译:Monte Carlo模拟形成星形颗粒状披风

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To mimic the exact interstellar condition, gas grain interactions via accretion from the gas phase and desorption from the grain surface are considered. Chemical composition of the grain mantle is noticed to be highly dependent on the physical parameters associated with a molecular cloud. Around the lower visual extinction (A_v ≤ 6), Interstellar photons are seen to play an important role via photo-dissociation and photo-evaporation towards the chemical composition of the interstellar grain mantle.We have studied the effects of photo-reactions by varying the number of layers which could be affected by it. Model calculations are carried out for a realistic time dependent case (i.e., extinction parameter and number density of the cloud both are changing with time) to follow the chemical evolution during the collapsing phase of a proto-star. Different routes to the formation of water molecules are extensively studied and it is noticed that around the dense region, production of water molecules via O_3 and H_2O_2 contributes significantly.
机译:为了模拟精确的间隙条件,考虑通过来自气相和从谷物表面解吸的气体籽粒相互作用。谷物披露的化学成分被注意到高度依赖于与分子云相关的物理参数。围绕下视觉消光(A_v≤6),星际光子被看到打经由光离解和光蒸发朝向星际晶粒mantle.We的化学组成具有重要作用已经通过改变所研究的光反应的作用可能受其影响的层数。为实际时间依赖性情况进行模型计算(即,云的消光参数和数量密度随时间变化),以遵循原始星的塌陷阶段期间的化学演变。广泛研究了水分子形成的不同途径,并注意到围绕致密区域,通过O_3和H_2O_2产生水分子显着贡献。

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