Cross section alignment of polycyclic aromatic hydrocarbons by anisotropic radiation
arXiv:1710.01835 · doi:10.3847/1538-4357/aac6e7
Abstract
We study the effect of anisotropic radiation illumination on the alignment of polycyclic aromatic hydrocarbons (PAHs) and report that cross-sectional mechanism of alignment earlier considered in terms of gas-grain interactions can also be efficient for the photon-grain interaction. We demonstrate this by first calculating the angle-dependence rotational damping and excitation coefficients by photon absorption followed by infrared emission. We then calculate the degree of PAH alignment for the different environments and physical parameters, including the illumination direction, ionization fraction, and magnetic field strength. For the reflection nebula (RN) conditions with unidirectional radiation field, we find that the degree of alignment tends to increase with increasing the angle between the illumination direction and the magnetic field, as a result of the decrease of the cross-section of photon absorption with . We calculate the polarization of spinning PAH emission using the obtained degree of alignment for the different physical parameters, assuming constant grain temperatures. We find that the polarization of spinning PAH emission from RN can be large, between at frequencies GHz, whereas the polarization is less than for photodissociation regions (PDRs). In realistic conditions, the polarization is expected to be lower due to grain temperature fluctuations and magnetic field geometry. The polarization for the diffuse cold neutral medium (CNM) is rather low, below at GHz, consistent with observations by WMAP and Planck. Our results demonstrate that the RNe are the favored environment to observe the polarization of spinning dust emission as well as polarized mid-IR emission from PAHs.
18 pages, 13 figures; accepted to ApJ; thermal dust emission and polarization added for comparison with spinning dust
References in corpus (16)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Magnetism in Graphene Induced by Single-Atom Defects
- Atomic-scale control of graphene magnetism using hydrogen atoms
- Radiative torques: Analytical Model and Basic Properties
- Planck intermediate results. XIX. An overview of the polarized thermal emission from Galactic dust
- Radiative torque alignment: Essential Physical Processes
- The evidence of radio polarization induced by the radiative grain alignment and self-scattering of dust grains in a protoplanetary disk
- ALMA Reveals Transition of Polarization Pattern with Wavelength in HL Tau's Disk
- Subsonic Mechanical Alignment of Irregular Grains
- Alignment of Dust with Magnetic Inclusions: Radiative Torques and Superparamagnetic Barnett and Nuclear Relaxation
- Modeling the Anomalous Microwave Emission with Spinning Nanoparticles: No PAHs Required
- Polycyclic Aromatic Hydrocarbon in Protoplanetary Disks around Herbig Ae/Be and T Tauri Stars
- Polarization Observations of the Anomalous Microwave Emission in the Perseus Molecular Complex with the Cosmosomas Experiment
- An Ordered Magnetic Field in the Protoplanetary Disk of AB Aur Revealed by Mid-Infrared Polarimetry
- New radio observations of anomalous microwave emission in the HII region RCW175
- Detection of Polarized Infrared Emission by Polycyclic Aromatic Hydrocarbons in the MWC 1080 Nebula
Cited by in corpus (7)
- Observational Constraints on the Physical Properties of Interstellar Dust in the Post-Planck Era
- Alignment and rotational disruption of dust
- Radiative torques of irregular grains: Describing the alignment of a grain ensemble
- Ultraviolet Spectropolarimetry with Polstar: Interstellar Medium Science
- Dust rotational dynamics in non-stationary shock: rotational disruption of nanoparticles by stochastic mechanical torques and spinning dust emission
- Spinning Nanoparticles Impacted by C-shock: Implications for Radio-millimeter Emission from Star-forming Regions
- Polarization of Infrared Emission from Polycyclic Aromatic Hydrocarbons