The Optical Extinction Law Depends on Magnetic Field Orientation: The $R_V$-$ψ$ Relation

Fuente: arXiv
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Main Author: Hensley, Brandon S.
Format: Preprint
Published: 2024
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author Hensley, Brandon S.
author_facet Hensley, Brandon S.
contents For aspherical interstellar dust grains aligned with their short axes preferentially parallel to the local magnetic field, the amount of extinction per grain is larger when the magnetic field is along the line of sight and smaller when in the plane of the sky. To the extent that optical extinction arises from both aligned and unaligned grain populations with different extinction properties, changes in the magnetic field orientation induces changes in its wavelength dependence, parameterized by $R_V \equiv A_V/E(B-V)$. We demonstrate that the measured total and polarized extinction curves of the diffuse Galactic interstellar medium imply $R_V$ varies from 3.21 when the magnetic field is along the line of sight ($ψ= 0$) to $R_V = 3.05$ when in the plane of the sky ($ψ= 90^\circ$). This effect could therefore account for much of the large-scale $R_V$ variation observed across the sky ($σ(R_V) \simeq 0.2$), particularly at high Galactic latitudes.
format Preprint
id arxiv_https___arxiv_org_abs_2411_16839
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The Optical Extinction Law Depends on Magnetic Field Orientation: The $R_V$-$ψ$ Relation
Hensley, Brandon S.
Astrophysics of Galaxies
For aspherical interstellar dust grains aligned with their short axes preferentially parallel to the local magnetic field, the amount of extinction per grain is larger when the magnetic field is along the line of sight and smaller when in the plane of the sky. To the extent that optical extinction arises from both aligned and unaligned grain populations with different extinction properties, changes in the magnetic field orientation induces changes in its wavelength dependence, parameterized by $R_V \equiv A_V/E(B-V)$. We demonstrate that the measured total and polarized extinction curves of the diffuse Galactic interstellar medium imply $R_V$ varies from 3.21 when the magnetic field is along the line of sight ($ψ= 0$) to $R_V = 3.05$ when in the plane of the sky ($ψ= 90^\circ$). This effect could therefore account for much of the large-scale $R_V$ variation observed across the sky ($σ(R_V) \simeq 0.2$), particularly at high Galactic latitudes.
title The Optical Extinction Law Depends on Magnetic Field Orientation: The $R_V$-$ψ$ Relation
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2411.16839