Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/9016
Title: Bayesian inference methodology to characterize the dust emissivity at far-infrared and submillimeter frequencies
Authors: Adak, Debabrata
Shaikh, Shabbir
Sinha, Srijita
Ghosh, Tuhin
Boulanger, Francois
Lagache, Guilaine
SOURADEEP, TARUN
Miville-Deschenes, Marc-Antoine
Dept. of Physics
Keywords: Methods: statistical
ISM: general
Diffuse radiation
Submillimetre: diffuse background
Submillimetre: ISM
2024
2024-JUL-WEEK1
TOC-JUL-2024
Issue Date: Jul-2024
Publisher: Oxford University Press
Citation: Monthly Notices of the Royal Astronomical Society, 531(04), 4876–4892.
Abstract: We present a Bayesian inference method to characterize the dust emission properties using the well-known dust-HI correlation in the diffuse interstellar medium at Planck frequencies 𝜈≥217 GHz. We use the Galactic HI map from the Galactic All-Sky Survey (GASS) as a template to trace the Galactic dust emission. We jointly infer the pixel-dependent dust emissivity and the zero level present in the Planck intensity maps. We use the Hamiltonian Monte Carlo technique to sample the high-dimensional parameter space (⁠𝐷∼103⁠). We demonstrate that the methodology leads to unbiased recovery of dust emissivity per pixel and the zero level when applied to realistic Planck sky simulations over a 6300 deg2 area around the Southern Galactic pole. As an application on data, we analyse the Planck intensity map at 353 GHz to jointly infer the pixel-dependent dust emissivity at 𝑁side=32 resolution (1.8° pixel size) and the global offset. We find that the spatially varying dust emissivity has a mean of 0.031 MJy sr−1(1020cm−2)−1 and 1𝜎 standard deviation of 0.007 MJy sr−1(1020cm−2)−1⁠. The mean dust emissivity increases monotonically with increasing mean HI column density. We find that the inferred global offset is consistent with the expected level of cosmic infrared background (CIB) monopole added to the Planck data at 353 GHz. This method is useful in studying the line-of-sight variations of dust spectral energy distribution in the multiphase interstellar medium.
URI: https://doi.org/10.1093/mnras/stae1365
http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/9016
ISSN: 0035-8711
1365-2966
Appears in Collections:JOURNAL ARTICLES

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