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Related papers: Dust growth in molecular cloud envelopes: a numeri…

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By performing $N$-body simulations, we investigated fundamental processes of collisions between dust aggregates composed of submicron-sized icy dust monomers. We examined the mass distribution of fragments in the collisional outcomes in a…

Earth and Planetary Astrophysics · Physics 2023-02-22 Yukihiko Hasegawa , Takeru K. Suzuki , Hidekazu Tanaka , Hiroshi Kobayashi , Koji Wada

The distribution of interstellar dust grains (ISDG) observed in the Solar System depends on the nature of the interstellar medium-solar wind interaction. The charge of the grains couples them to the interstellar magnetic field (ISMF)…

Earth and Planetary Astrophysics · Physics 2014-11-20 J. D. Slavin , P. C. Frisch , J. Heerikhuisen , N. V. Pogorelov , H. -R. Mueller , W. T. Reach , G. P. Zank , B. Dasgupta , K. Avinash

The sizes of interstellar grains are widely distributed, ranging from a few angstroms to a few micrometers. The ultraviolet (UV) and optical extinction constrains the dust in the size range of a couple hundredth micrometers to several…

Astrophysics of Galaxies · Physics 2015-09-23 Shu Wang , Aigen Li , B. W. Jiang

Computational models of interstellar gas-grain chemistry have historically adopted a single dust-grain size of 0.1 micron, assumed to be representative of the size distribution present in the interstellar medium. Here, we investigate the…

Astrophysics of Galaxies · Physics 2016-02-03 Tyler Pauly , Robin T. Garrod

We present the results of a three dimensional, locally isothermal, non-self-gravitating SPH code which models protoplanetary disks with two fluids: gas and dust. We ran simulations of a 1 Msun star surrounded by a 0.01 Msun disk comprising…

We revisit the evolution model of grain size distribution in a galaxy for the ultimate purpose of implementing it in hydrodynamical simulations. We simplify the previous model in such a way that some model-dependent assumptions are replaced…

Astrophysics of Galaxies · Physics 2018-10-31 Hiroyuki Hirashita , Shohei Aoyama

The interaction of dust grains originating from the local interstellar cloud with the environment inside the heliosphere is investigated. As a consequence of this interaction the spatial distribution of interstellar dust grains changes with…

Astrophysics · Physics 2015-06-24 M. Landgraf

Context. The largest grains (0.5-1 micron) in the interstellar size distribution are efficient in scattering near- and mid-infrared radiation. These wavelengths are therefore particularly well suited to probe the still uncertain high-end of…

Astrophysics of Galaxies · Physics 2015-06-17 M. Andersen , J. Steinacker , W-F. Thi , L. Pagani , A. Bacmann , R. Paladini

We investigate the role and behaviour of dust grains in C-type MHD shock waves in weakly ionized, dense molecular clouds. New shock models are presented for steady, oblique C-type shock structures with shock speed v_s=18km/s, n_H=10^5cm^-3,…

Astrophysics · Physics 2009-11-11 Jacqueline F. Chapman , Mark Wardle

AGB stars are, together with supernovae, the main contributors of stellar dust to the interstellar medium (ISM). Dust grains formed by AGB stars are thought to be large. However, as dust nucleation and growth within their outflows are still…

Solar and Stellar Astrophysics · Physics 2020-05-13 M. Van de Sande , C. Walsh , T. Danilovich

Recent observations of brown dwarf spectroscopic variability in the infrared infer the presence of patchy cloud cover. This paper proposes a mechanism for producing inhomogeneous cloud coverage due to the depletion of cloud particles…

Solar and Stellar Astrophysics · Physics 2015-05-19 Craig R. Stark , Christiane Helling , Declan A. Diver

Context. The observed cloudshine and coreshine (C-shine) have been explained in terms of grain growth leading to enhanced scatter- ing from clouds in the J, H and K photometric bands and the Spitzer IRAC 3.6 and 4.5 {\mu}m bands. Aims.…

Astrophysics of Galaxies · Physics 2016-03-23 A. P. Jones , M. Koehler , N. Ysard , E. Dartois , M. Godard , L. Gavilan

Variations in the observed dust emission and extinction indicate a systematic evolution of grain properties in the transition from the diffuse interstellar medium (ISM) to denser molecular clouds. The differences in the dust spectral energy…

Astrophysics of Galaxies · Physics 2015-06-05 Melanie Köhler , Nathalie Ysard , Anthony P. Jones

We present a model for the diffuse interstellar dust that explains the observed wavelength-dependence of extinction, emission, linear and circular polarisation of light. The model is set-up with a small number of parameters. It consists of…

Astrophysics of Galaxies · Physics 2015-06-16 R. Siebenmorgen , N. V. Voshchinnikov , S. Bagnulo

Maps of estimated dust column density in molecular clouds are usually assumed to reliably trace the total gas column density structure. In this work we present results showing a clear discrepancy between the dust and the gas distribution in…

Shattering of dust grains in the interstellar medium is a viable mechanism of small grain production in galaxies. We examine the robustness or uncertainty in the theoretical predictions of shattering. We identify $P_1$ (the critical…

Astrophysics of Galaxies · Physics 2015-06-15 Hiroyuki Hirashita , Hiroshi Kobayashi

Observational evidence seems to indicate that the depletion of interstellar carbon into dust shows rather wide variations and that carbon undergoes rather rapid recycling in the interstellar medium (ISM). Small hydrocarbon grains are…

We present a numerical code for continuum radiative transfer that is based on the idea of a `library' describing the relation between the intensity of the local radiation field and the resulting dust emission. With this information and…

Astrophysics · Physics 2009-11-07 M. Juvela , P. Padoan

We construct size distributions for carbonaceous and silicate grain populations in different regions of the Milky Way, LMC, and SMC. The size distributions include sufficient very small carbonaceous grains (including polycyclic aromatic…

Astrophysics · Physics 2011-07-18 Joseph C. Weingartner , B. T. Draine
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