论文标题

无定形硅酸盐粉尘类似物的低温光学常数

Low-temperature optical constants of amorphous silicate dust analogues

论文作者

Demyk, K., Gromov, V., Meny, C., Ysard, N., Paradis, D., Jones, A. P., Petitprez, D., Hubert, P., Leroux, H., Nayral, C., Delpech, F.

论文摘要

宇宙灰尘模型是我们对我们对星系中星际云,围绕进化和年轻恒星以及原球门磁盘等星际云的多样化的天文环境的理解来促进我们对天文环境的理解的关键要素。这样的模型由几个尘埃种群组成,每个种群都有不同的组成和大小分布。尽管大多数模型都假设球形晶粒,但它们也可能考虑不同的谷物形状。所有这些都包括硅酸盐灰尘的组成部分。这些粉尘成分的吸收和发射特性是根据每个灰尘材料的光学常数计算得出的,这些粉尘材料具有各种实验,现象学和理论起源,具体取决于模型。我们旨在为社区提供新的光学常数,以在低温下为无定形硅酸盐类似物。这些类似物由四个富含毫克的硅酸盐样品组成的化学计量,范围从Enstatite到橄榄石,以及八个Mg和Fe富含硅酸盐的样品,具有辉石化学计量,镁和铁含量不同。我们使用kramers-kronig关系从传输测量中计算出光学常数,假设晶粒与波长相比小,并且分别为MG和Fe富含样品的轴比为1.5和2的形状。根据样品的不同,在5到800-1000微米的波长范围内计算了硅酸盐灰尘类似物的新的光学常数,并根据样品的温度为10、30、100、200和300 k的温度。我们确定了基于用于计算它们的假设的派生光学常量的不确定性。为了促进宇宙灰尘模型中这些数据的使用,我们提供了在测得的光谱范围外推导到UV-NIR和MM-CM波长范围的光学常数,以及可用于在10-300 k范围内的任何温度下插值的公式。

Cosmic dust models are key ingredients in advancing our understanding of astronomical environments as diverse as interstellar clouds in galaxies, circumstellar envelopes around evolved and young stars, and protoplanetary disks. Such models consist of several dust populations, each with different compositions and size distributions. They may also consider different grain shapes, although most models assume spherical grains. All include a component of silicate dust. The absorption and emission properties of these dust components are calculated from the optical constants of each dust material which have various experimental, phenomenological, and theoretical origins depending on the model. We aim to provide the community with new sets of optical constants for amorphous silicate dust analogues at low temperatures. The analogues consist of four Mg-rich silicate samples of stoichiometry ranging from enstatite to olivine, and of eight samples of Mg and Fe rich silicates with a pyroxene stoichiometry and differing magnesium and iron content. We calculated the optical constants from transmission measurements using the Kramers-Kronig relations, assuming that the grains are small compared to the wavelength and prolate in shape with axis ratios of 1.5 and 2 for the Mg and Fe rich samples, respectively. New optical constants for silicate dust analogues were calculated over the wavelength range from 5 to 800-1000 microns, depending on the sample, and at temperatures of 10, 30, 100, 200, and 300 K.We determined the uncertainties on the derived optical constants based on the assumptions used to calculate them. To facilitate the use of these data in cosmic dust models, we provide optical constants extrapolated outside the measured spectral range into the UV-NIR and mm-cm wavelength ranges, as well as formulae that can be used to interpolate them at any temperature in the range 10 - 300 K.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源