ICE CHEMISTRY IN STARLESS MOLECULAR CORES

被引:15
|
作者
Kalvans, J. [1 ]
机构
[1] Ventspils Univ Coll, Engn Res Inst, Ventspils Int Radio Astron Ctr, LV-3601 Ventspils, Latvia
来源
ASTROPHYSICAL JOURNAL | 2015年 / 806卷 / 02期
关键词
astrochemistry; ISM: clouds; ISM: individual objects (CB 17; CB; 26; 27; B68); DENSE INTERSTELLAR CLOUDS; GAS-GRAIN CHEMISTRY; COMPLEX ORGANIC-MOLECULES; TIME-DEPENDENT CHEMISTRY; RHO-OPHIUCHI CLOUD; SURFACE-REACTIONS; PRESTELLAR CORES; DUST GRAINS; FORMING REGIONS; CHEMICAL-MODELS;
D O I
10.1088/0004-637X/806/2/196
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Starless molecular cores are natural laboratories for interstellar molecular chemistry research. The chemistry of ices in such objects was investigated with a three-phase (gas, surface, and mantle) model. We considered the center part of five starless cores, with their physical conditions derived from observations. The ice chemistry of oxygen, nitrogen, sulfur, and complex organic molecules (COMs) was analyzed. We found that an ice-depth dimension, measured, e.g., in monolayers, is essential for modeling of chemistry in interstellar ices. Particularly, the H2O:CO:CO2:N-2:NH3 ice abundance ratio regulates the production and destruction of minor species. It is suggested that photodesorption during the core-collapse period is responsible for the high abundance of interstellar H2O2 and O2H. and other species synthesized on the surface. The calculated abundances of COMs in ice were compared to observed gas-phase values. Smaller activation barriers for CO and H2CO hydrogenation may help explain the production of a number of COMs. The observed abundance of methyl formate HCOOCH3 could be reproduced with a 1 kyr, 20 K temperature spike. Possible desorption mechanisms, relevant for COMs, are gas turbulence (ice exposure to interstellar photons) or a weak shock within the cloud core (grain collisions). To reproduce the observed COM abundances with the present 0D model, 1%-10% of ice mass needs to be sublimated. We estimate that the lifetime for starless cores likely does not exceed 1 Myr. Taurus cores are likely to be younger than their counterparts in most other clouds.
引用
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页数:27
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