Spinning Dust Emission: Effects of irregular grain shape, transient heating and comparison with WMAP results
arXiv:1105.2302 · doi:10.1088/0004-637X/741/2/87
Abstract
Planck is expected to answer crucial questions on the early Universe, but it also provides further understanding on anomalous microwave emission. Electric dipole emission from spinning dust grains continues to be the favored interpretation of anomalous microwave emission. In this paper, we present a method to calculate the rotational emission from small grains of irregular shape with moments of inertia . We show that a torque-free rotating irregular grain with a given angular momentum radiates at multiple frequency modes. The resulting spinning dust spectrum has peak frequency and emissivity increasing with the degree of grain shape irregularity, which is defined by . We discuss how the orientation of dipole moment $\bmu$ in body coordinates affects the spinning dust spectrum for different regimes of internal thermal fluctuations. We show that the spinning dust emissivity for the case of strong thermal fluctuations is less sensitive to the orientation of $\bmu$ than in the case of weak thermal fluctuations. We calculate spinning dust spectra for a range of gas density and dipole moment. The effect of compressible turbulence on spinning dust emission intensity is investigated. We show that the emission intensity in a turbulent medium increases by a factor from 1.2-1.4 relative to that in a uniform medium, as sonic Mach number increases from 2-7. Finally, spinning dust parameters are constrained by fitting our improved model to five-year {\it Wilkinson Microwave Anisotropy Probe} cross-correlation foreground spectra, for both the H-correlated and 100 m-correlated emission spectra.
24 pages, 17 figures, relation to molecular rotation spectra added, accepted by Astrophysical Journal
References in corpus (9)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Three-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Temperature Analysis
- Density Fluctuations in MHD Turbulence: Spectra, Intermittency and Topology
- Extended Anomalous Foreground Emission in the WMAP 3-Year Data
- Radiative torque alignment: Essential Physical Processes
- A refined model for spinning dust radiation
- Centimeter-wave continuum radiation from the rho Ophiuchi molecular cloud
- Radiative torques alignment in the presence of pinwheel torques
- Constraining Spinning Dust Parameters with the WMAP Five-Year Data
Cited by in corpus (52)
- An Overview of the Dwarf Galaxy Survey
- The Python Sky Model: software for simulating the Galactic microwave sky
- Planck intermediate results. XXII. Frequency dependence of thermal emission from Galactic dust in intensity and polarization
- Planck intermediate results. XVII. Emission of dust in the diffuse interstellar medium from the far-infrared to microwave frequencies
- Magnetic Nanoparticles in the Interstellar Medium: Emission Spectrum and Polarization
- The Astrodust+PAH Model: A Unified Description of the Extinction, Emission, and Polarization from Dust in the Diffuse Interstellar Medium
- The State-of-Play of Anomalous Microwave Emission (AME) Research
- Planck intermediate results. XIV. Dust emission at millimetre wavelengths in the Galactic plane
- The Submm and mm Excess of the SMC: Magnetic Dipole Emission from Magnetic Nanoparticles?
- Modeling the Anomalous Microwave Emission with Spinning Nanoparticles: No PAHs Required
- A dynamical constraint on interstellar dust models from radiative torque disruption
- A Case Against Spinning PAHs as the Source of the Anomalous Microwave Emission
- Polarization of Magnetic Dipole Emission and Spinning Dust Emission from Magnetic Nanoparticles
- Constraint on the Polarization of Electric Dipole Emission from Spinning Dust
- A multi-wavelength investigation of RCW175: an HII region harboring spinning dust emission
- Spinning dust emission from ultrasmall silicates: emissivity and polarization spectrum
- Paramagnetic alignment of small grains: a novel method for measuring interstellar magnetic fields
- Polyacenes and diffuse interstellar bands
- Radiative torques of irregular grains: Describing the alignment of a grain ensemble
- Revisiting Acceleration of Charged Grains in Magnetohydrodynamic Turbulence
- Characterizing Extragalactic Anomalous Microwave Emission in NGC 6946 with CARMA
- Polycyclic Aromatic Hydrocarbons, the Anomalous Microwave Emission, and Their Connection to the Cold Neutral Medium
- Foreground Analysis Using Cross-Correlations of External Templates on the 7-year WMAP data
- Detection of Spectral Variations of Anomalous Microwave Emission with QUIJOTE and C-BASS
- Planck intermediate results. XII: Diffuse Galactic components in the Gould Belt System
- Absorption by Spinning Dust: a Contaminant for High-Redshift 21 cm Observations
- Dust Rotational Dynamics in C-shocks: Rotational Disruption of Nanoparticles by Stochastic Mechanical Torques and Spinning Dust Emission
- Derivation of an Analytical Approximation of the Spectrum of Spinning Dust Emission
- On the Limitations of the Anomalous Microwave Emission Emissivity
- Using cm Observations to Constrain the Abundance of Very Small Dust Grains in Galactic Cold Cores
- Acceleration of Small Dust Grains due to Charge Fluctuations
- Search for PAHs in the Perseus molecular cloud with the Green Bank Telescope
- Spinning dust emission from circumstellar disks and its role in excess microwave emission
- Analysis of WMAP 7-year Temperature Data: Astrophysics of the Galactic Haze
- Modeling rotational disruption of grains and microwave emission from spinning dust in AGB envelopes
- A 77-118 GHz Resonance-free Septum Polarizer
- Variation of dust properties with cosmic time implied by radiative torque disruption
- Resolved observations at 31 GHz of spinning dust emissivity variations in Oph
- Gamma-ray Burst Afterglows: Time-Varying Extinction, Polarization, and Colors due to Rotational Disruption of Dust Grains
- Where's the Dust?: The Deepening Anomaly of Microwave Emission in NGC 4725 B
- Cross section alignment of polycyclic aromatic hydrocarbons by anisotropic radiation
- Spinning Dust Emission from Wobbling Grains: Important Physical Effects and Implications
- Effect of alignment on polarized infrared emission from polycyclic aromatic hydrocarbons
- Effect of Dust Rotational Disruption by Radiative Torques and Implications for F-corona decrease revealed by the Parker Solar Probe
- Tracing PAH Emission in -Orionis Using COBE/DIRBE Data
- Constraints on free-free emission from Anomalous Microwave Emission Sources in the Perseus Molecular Cloud
- A new look at the integrated radio/microwave continuum spectrum of Galactic supernova remnant IC443
- Evolution of Dust and Water Ice in Cometary Comae by Radiative Torques
- A characterization of the diffuse Galactic emissions in the anti-center of the Galaxy
- SpyDust: an improved and extended implementation for modeling spinning dust radiation
- Effect of dust rotational disruption by radiative torques on radiation pressure feedback from massive protostars
- A characterization of the diffuse Galactic emissions at large angular scales using the Tenerife data