Optical properties of cosmic dust analogs: A review
arXiv:1004.5234 · doi:10.1117/1.3417067
Abstract
Nanometer- and micrometer-sized solid particles play an important role in the evolutionary cycle of stars and interstellar matter. The optical properties of cosmic grains determine the interaction of the radiation field with the solids, thereby regulating the temperature structure and spectral appearance of dusty regions. Radiation pressure on dust grains and their collisions with the gas atoms and molecules can drive powerful winds. The analysis of observed spectral features, especially in the infrared wavelength range, provides important information on grain size, composition and structure as well as temperature and spatial distribution of the material. The relevant optical data for interstellar, circumstellar, and protoplanetary grains can be obtained by measurements on cosmic dust analogs in the laboratory or can be calculated from grain models based on optical constants. Both approaches have made progress in the last years, triggered by the need to interpret increasingly detailed high-quality astronomical observations. The statistical theoretical approach, spectroscopic experiments at variable temperature and absorption spectroscopy of aerosol particulates play an important role for the successful application of the data in dust astrophysics.
18 pages, 6 figures, invited review for Journal of Nanophotonics, Special Section to honour C.F. Bohren
References in corpus (11)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Dust evolution in protoplanetary disks around Herbig Ae/Be stars - The Spitzer view
- Modeling Porous Dust Grains with Ballistic Aggregates I: Geometry and Optical Properties
- The infrared emission spectra of compositionally inhomogeneous aggregates composed of irregularly shaped constituents
- The 10 m infrared band of silicate dust: A laboratory study comparing the aerosol and KBr pellet techniques
- Morphological effects on IR band profiles: Experimental spectroscopic analysis with application to observed spectra of oxygen-rich AGB stars
- Carbonates in space - The challenge of low temperature data
- Laboratory-based grain-shape models for simulating dust infrared spectra
- Dust in Proto-Planetary Disks: Properties and Evolution
- Far-infrared spectra of hydrous silicates at low temperatures - Providing laboratory data for Herschel and ALMA
- Dust Processing and Mineralogy in Protoplanetary Accretion Disks
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- Laboratory measurement of optical constants of solid SiO and application to circumstellar dust
- Radiative transfer of ionizing radiation through gas and dust: stellar source case
- Primordial Planets Explain Interstellar Dust, the Formation of Life; and Falsify Dark Energy
- The Segmented Beamformer for Electromagnetic Waves of the Terahertz Free Electron Laser