A derivation of nano-diamond optical constants: Here be nano-diamonds
Abstract
% context {Nano-diamonds are an enticing and enigmatic dust component yet their origin is still unclear. They have been unequivocally detected in only a few astronomical objects, yet they are the most abundant of the pre-solar grains, both in terms of mass and number.} %aims {Our goal is to derive a viable set of nano-diamond optical constants and optical properties to enable their modelling in any type of astrophysical object where, primarily, the local (inter)stellar radiation field is well-determined.} % methods {The complex indices of refraction, , of nano-diamonds, constrained by available laboratory measurements, were calculated as a function of size, surface hydrogenation, and internal (dis)order, using the THEMIS a-C(:H) methodology optEC(a).} % results {To demonstrate the utility of the optical properties (the efficiency factors , , and ), calculated using the derived data, we show that nano-diamonds could be abundant in the interstellar medium (ISM) and yet remain undetectable there.} % conclusions {The derived optical constants provide a means to explore the existence and viability of nano-diamonds in a wide range of astronomical sources. Here we show that up to a few percent of the available carbon budget could be hidden in the form of nano-diamonds in the diffuse ISM, in abundances comparable to the pre-solar nano-diamond abundances in primitive meteorites.}
Keywords
Cite
@article{arxiv.2111.04492,
title = {A derivation of nano-diamond optical constants: Here be nano-diamonds},
author = {A. P. Jones and Nathalie Ysard},
journal= {arXiv preprint arXiv:2111.04492},
year = {2022}
}
Comments
17 pages, 8 figures, 4 tables