论文标题
TMC-1边界之间的化学变化:从半透明相到致密相的分子示踪剂
Chemical variations across the TMC-1 boundary: molecular tracers from translucent phase to dense phase
论文作者
论文摘要
我们研究了从半透明相到致密相的金牛座分子云-1(TMC-1)细丝的气相和晶粒表面物种的化学演变。通过将观察结果与最新化学网络的建模结果进行比较,我们检查了碳,氧,氮和含硫物种的转化过程,即从它们的初始原子形式到其主要分子储层的主要分子储层形式,同时在气相和粒度上。发现转换过程取决于物种和$ _V $。探索了最初的碳与氧元素丰度比(c/o)对化学的影响,并且初始碳元素丰度为2.5 $ \ times $ 10 $^{ - 4} $,c/o比率为0.5的比率为0.5的比例最佳地鉴定出TMC-1 cp的最佳体验。 Based on the TMC-1 condition, we predicted a varied grain ice composition during the evolutions of molecular clouds, with H$_2$O ice as the dominant ice composition at A$_V$ $>$ 4 mag, CO$_2$ ice as the dominant ice composition at A$_V$ $<$ 4 mag, while CO ice severely decreased at A$_V$ around 4--5 mag.
We investigated the chemical evolutions of gas phase and grain surface species across the Taurus molecular cloud-1 (TMC-1) filament from translucent phase to dense phase. By comparing observations with modeling results from an up-to-date chemical network, we examined the conversion processes for the carbon-, oxygen-, nitrogen- and sulfur-bearing species, i.e.from their initial atomic form to their main molecular reservoir form both in the gas phase and on the grain surface. The conversion processes were found to depend on the species and A$_V$. The effect of initial carbon to oxygen elemental abundances ratio (C/O) by varying O on the chemistry was explored, and an initial carbon elemental abundance of 2.5 $\times$ 10$^{-4}$ and a C/O ratio of 0.5 could best reproduce the abundances of most observed molecules at TMC-1 CP, where more than 90 molecules have been identified. Based on the TMC-1 condition, we predicted a varied grain ice composition during the evolutions of molecular clouds, with H$_2$O ice as the dominant ice composition at A$_V$ $>$ 4 mag, CO$_2$ ice as the dominant ice composition at A$_V$ $<$ 4 mag, while CO ice severely decreased at A$_V$ around 4--5 mag.