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天鹰座:一个用于通过keV离子辐照天体化学冰类似物的实验室设施。

AQUILA: A laboratory facility for the irradiation of astrochemical ice analogs by keV ions.

作者信息

Rácz R, Kovács S T S, Lakatos G, Rahul K K, Mifsud D V, Herczku P, Sulik B, Juhász Z, Perduk Z, Ioppolo S, Mason N J, Field T A, Biri S, McCullough R W

机构信息

HUN-REN Institute for Nuclear Research (Atomki), Debrecen H-4026, Hungary.

Institute of Chemistry, University of Debrecen, Debrecen H-4032, Hungary.

出版信息

Rev Sci Instrum. 2024 Sep 1;95(9). doi: 10.1063/5.0207967.

Abstract

The detection of various molecular species, including complex organic molecules relevant to biochemical and geochemical processes, in astronomical settings, such as the interstellar medium or the outer solar system, has led to the increased need for a better understanding of the chemistry occurring in these cold regions of space. In this context, the chemistry of ices prepared and processed at cryogenic temperatures has proven to be of particular interest due to the fact that many interstellar molecules are believed to originate within the icy mantles adsorbed on nano- and micro-scale dust particles. The chemistry leading to the formation of such molecules may be initiated by ionizing radiation in the form of galactic cosmic rays or stellar winds, and thus, there has been an increased interest in commissioning experimental setups capable of simulating and better characterizing this solid-phase radiation astrochemistry. In this article, we describe a new facility called AQUILA (Atomki-Queen's University Ice Laboratory for Astrochemistry), which has been purposefully designed to study the chemical evolution of ices analogous to those that may be found in the dense interstellar medium or the outer solar system as a result of their exposure to keV ion beams. The results of some ion irradiation studies of CH3OH ice at 20 K are discussed to exemplify the experimental capabilities of the AQUILA as well as to highlight its complementary nature to another laboratory astrochemistry setup at our institute.

摘要

在诸如星际介质或外太阳系等天文环境中,对包括与生化和地球化学过程相关的复杂有机分子在内的各种分子种类的探测,使得人们越来越需要更好地理解在这些寒冷太空区域中发生的化学过程。在此背景下,由于许多星际分子被认为起源于吸附在纳米和微米级尘埃颗粒上的冰质幔层,因此在低温下制备和处理的冰的化学性质已被证明特别令人感兴趣。导致此类分子形成的化学过程可能由银河宇宙射线或恒星风形式的电离辐射引发,因此,人们对调试能够模拟并更好地表征这种固相辐射天体化学的实验装置越来越感兴趣。在本文中,我们描述了一种名为AQUILA(阿托姆基-女王大学天体化学冰实验室)的新设施,该设施经过专门设计,用于研究类似于在致密星际介质或外太阳系中可能发现的冰,由于其暴露于keV离子束而发生的化学演化。本文讨论了一些在20K下对甲醇冰进行离子辐照研究的结果,以例证AQUILA的实验能力,并突出其与我们研究所另一个实验室天体化学装置的互补性质。

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