Khamesian Marjan, Douguet Nicolas, Fonseca Dos Santos Samantha, Dulieu Olivier, Raoult Maurice, Brigg Will J, Kokoouline Viatcheslav
Department of Physics, University of Central Florida, Orlando, Florida 32816, USA.
Department of Physics and Astronomy, Drake University, Des Moines, Iowa 50311, USA.
Phys Rev Lett. 2016 Sep 16;117(12):123001. doi: 10.1103/PhysRevLett.117.123001. Epub 2016 Sep 13.
The existence of negative ions in interstellar clouds has been associated for several decades with the process of radiative electron attachment. In this Letter, we report compelling evidence supporting the fact that the radiative attachment of a low-energy electron is inefficient to form the carbon chain anions CN^{-}, C_{3}N^{-}, and C_{5}N^{-} detected in interstellar clouds. The validity of the approach is confirmed by good agreement with experimental data obtained for the inverse photodetachment process, which represents the major cause of anion destruction in interstellar space. As a consequence, we suggest alternative models that could explain the formation of anions.
几十年来,星际云中负离子的存在一直与辐射电子附着过程相关联。在本信函中,我们报告了确凿的证据,支持低能电子的辐射附着对于形成在星际云中检测到的碳链阴离子CN⁻、C₃N⁻和C₅N⁻效率低下这一事实。该方法的有效性通过与逆光致离解过程获得的实验数据良好吻合得到证实,而逆光致离解过程是星际空间中阴离子破坏的主要原因。因此,我们提出了可以解释阴离子形成的替代模型。