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Photochemistry and desorption induced by X-rays in water rich astrophysical ice analogs: implications for the moon Enceladus and other frozen space environments

机译:X射线在富水天体冰类似物中的光化学和解吸:对月亮土卫二和其他冰冻空间环境的影响

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Soft X-rays are an important agent for chemical processing in the Solar System and in the interstellar medium. The photolysis and photodesorption processes of H _(2) O-rich ices triggered by soft X-rays was, experimentally, addressed in this paper. The experiments were performed at the Brazilian synchrotron facility LNLS/CNPEN employing broadband radiation (from 6 to 2000 eV; mainly soft X-rays and a small fraction of VUV) in solid samples at temperatures of 20 and 80 K. The icy samples were monitored by infrared spectroscopy. We determined the effective destruction cross section (in the order 10 ~(?18) cm ~(2) ) as well as the formation cross section for the new species produced after the irradiation. Among them, we list OCN ~(?) , CO, CO _(3) , CH _(3) OH, H _(2) O _(2) , HCOO ~(?) , NH _(4) ~(+) , HCONH _(2) and CH _(3) HCO, mostly formed in the experiment at 80 K. The chemical equilibrium stage was characterized and molecular abundances were quantified. In addition, we discuss a methodology to estimate the amount of unknown species in the ice produced by photolysis. The samples reach chemical equilibrium at fluences around 2–3 × 10 ~(18) cm ~(?2) . Timescales for reaching chemical equilibrium in space environments illuminated by X-rays were given, as well as the desorption yields induced by X-rays. The astrophysical implication on the surface chemistry and desorption processes at the moon Enceladus are provided.
机译:柔和的X射线是在太阳系和星际介质中进行化学处理的重要媒介。本文通过实验探讨了软X射线引发的富含H _(2)O的冰的光解和光解吸过程。实验是在巴西同步加速器设施LNLS / CNPEN上在20和80 K的温度下使用固体样品中的宽带辐射(6-2000 eV;主要是软X射线和一小部分VUV)进行的。对冰冷的样品进行监测通过红外光谱。我们确定了有效破坏截面(按10〜(?18)cm〜(2)的顺序)以及辐照后产生的新物种的形成截面。其中,我们列出了OCN〜(?),CO,CO _(3),CH _(3)OH,H _(2)O _(2),HCOO〜(?),NH _(4)〜( +),HCONH _(2)和CH _(3)HCO,大多数是在80 K的实验中形成的。表征了化学平衡阶段并定量了分子丰度。此外,我们讨论了一种估算光解冰中未知物种数量的方法。样品在注量约2–3×10〜(18)cm〜(?2)时达到化学平衡。给出了在X射线照射下的空间环境中达到化学平衡的时间表,以及X射线诱导的解吸产率。提供了对土卫二月亮表面化学和解吸过程的天体物理意义。

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