论文标题
LIDA -Leiden ICE数据库的星体化学数据库
LIDA - The Leiden Ice Database for Astrochemistry
论文作者
论文摘要
冰混合物中固相分子的高质量振动光谱以及对于天体物理相关性的温度需要解释针对原恒星和背景恒星的红外观测。在过去的25年中,莱顿天文台的天体物理学实验室提供了1100多种不同的冰样样品。随着詹姆斯·韦伯(James Webb)太空望远镜的最新推出,我们已经完全升级了莱顿冰数据库的天体化学(LIDA),并添加了最近测量的光谱。该手稿的目的是描述存在哪些选择,可以访问并使用大量的红外光谱,以及H2O ICE和面向天文学的在线工具的UV/VIV/VIV/VIV/VIV/VIV/VIV/VIV/VIV/VIV/VIS/VIS/VIS/VIS/VIS/VIS/VIS/VIS/vis/vis/vis/vis。 LIDA分别使用烧瓶和散景来生成网页和图形可视化,以搜索数据库中的冰类似物和JMOL中的3D分子可视化。数据库中的红外数据是通过在低温底物上凝结的冰膜的传播光谱记录的。 H2O冰的真实UV/VIS折射率是由同时使用单色Hene Laser Beam和宽带XE-ARC灯产生的干扰条纹,而理论上计算了真实和想象的MID-IR值。 LIDA还提供在线工具。第一个工具Specfy用于创建对原恒星的冰的合成光谱。第二个工具旨在计算中红外折射率值。 LIDA允许在固相中搜索,下载和可视化天体相关分子的实验数据,并提供支持天文观测的手段。例如,我们使用LIDA中可用的资源分析了Protostar AFGL 989的光谱,并得出了H2O,CO和CO2 ICES的色谱柱密度。
High quality vibrational spectra of solid-phase molecules in ice mixtures and for temperatures of astrophysical relevance are needed to interpret infrared observations toward protostars and background stars. Over the last 25 years, the Laboratory for Astrophysics at Leiden Observatory has provided more than 1100 spectra of diverse ice samples. Timely with the recent launch of the James Webb Space Telescope, we have fully upgraded the Leiden Ice Database for Astrochemistry (LIDA) adding recently measured spectra. The goal of this manuscript is to describe what options exist to get access to and work with a large collection of IR spectra, and the UV/vis to mid-infrared refractive index of H2O ice and astronomy-oriented online tools to support the interpretation of IR ice observations. LIDA uses Flask and Bokeh for generating the web pages and graph visualization, respectively, SQL for searching ice analogues within the database and Jmol for 3D molecule visualization. The infrared data in the database are recorded via transmission spectroscopy of ice films condensed on cryogenic substrates. The real UV/vis refractive indices of H2O ice are derived from interference fringes created from the simultaneous use of a monochromatic HeNe laser beam and a broadband Xe-arc lamp, whereas the real and imaginary mid-IR values are theoretically calculated. LIDA also offers online tools. The first tool, SPECFY, used to create a synthetic spectrum of ices towards protostars. The second tool aims at the calculation of mid-infrared refractive index values. LIDA allows to search, download and visualize experimental data of astrophysically relevant molecules in the solid phase, as well as to provide the means to support astronomical observations. As an example, we analyse the spectrum of the protostar AFGL 989 using the resources available in LIDA and derive the column densities of H2O, CO and CO2 ices.