Alignment of Dust by Radiative Torque: Recent Developments

Astronomy and Astrophysics – Astrophysics – Galaxy Astrophysics

Scientific paper

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18 pages, 9 figures, review for Astropol2008 meeting, complementary to the extended Lazarian (2007) review

Scientific paper

Alignment of dust by radiative torques (RATs) has proven to be the most promising mechanism to explain alignment in various astrophysical environments, from comet atmospheres to accretion disks, molecular clouds, and diffuse interstellar gas. We discuss some of the major advances, which include, first of all, formulating of the analytical model of RATs. This model was shown to reproduce well the torques acting on actual irregular dust grains and allowed studies of the parameter space for which the alignment happens with long axes perpendicular and parallel to the magnetic field. Such a study resulted in an important conclusion that, without any paramagnetic relaxation, the RAT alignment always happens for interstellar grains with long axes perpendicular to the magnetic field. We show that the gaseous bombardment in some cases increases the degree of alignment by knocking out grains from the positions of imperfect alignment when the grains rotate slowly to more stable positions of perfect alignment where grains rotate fast. In terms of pinwheel torques, important revisions have been made in the Lazarian and Draine model of grain flipping and thermal trapping. Those, however, do not change the major conclusion that very small grains (i.e. grain size smaller than ~0.03 micron) should be marginally aligned. Recent work made the RAT alignment a predictive theory which is ready for quantitative modeling of astrophysical polarization. We predict that the microwave emission from the Zodiacal dust presents an important contaminant, which should be included into foreground polarization templates.

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