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Chemical models for the contracting W3 IRS4

机译:订约W3 IRS4的化学模型

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We have studied the chemical evolution in the central core of a contracting cloud representing W3 IRS4. We modified the equation of temperature to satisfy the physical conditions of W3 IRS4. The chemical rate equations and the hydrodynamics are integrated simultaneously. The contraction is followed from a very low density of n = 10 cm~(-3) to high core density of n = 10~6 cm~(-3). The chemical evolution is studied for various chemical conditions, including both the effects of varying cosmic ray ionization rate and the effect of ion-dipole molecule collisions. The main results by using the more extensive chemical network with the most updating reaction show that the calculated fractional abundances are in agreement with observation at intermediate and enhanced cosmic ray ionization rate at high depletion of elemental atoms.
机译:我们已经研究了代表W3 IRS4的收缩云的中心核心中的化学演化。我们修改了温度方程,以满足W3 IRS4的物理条件。化学速率方程和流体动力学同时集成。收缩从n = 10 cm〜(-3)的极低密度到n = 10〜6 cm〜(-3)的高芯密度。研究了各种化学条件下的化学演化,包括变化的宇宙射线电离速率的影响和离子-偶极分子碰撞的影响。通过使用具有更广泛更新的反应的更广泛的化学网络的主要结果表明,计算出的分数丰度与在元素原子高度耗竭的中间和增强的宇宙射线电离速率下的观察结果一致。

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