Unlocking the Full Potential of Extragalactic Ly through Its Polarization Properties
arXiv:1802.04280 · doi:10.3847/1538-4357/aab5b7
Abstract
Lyman- (Ly) is a powerful astrophysical probe. Not only is it ubiquitous at high redshifts, it is also a resonant line, making Ly photons scatter. This scattering process depends on the physical conditions of the gas through which Ly propagates, and these conditions are imprinted on observables such as the Ly spectrum and its surface brightness profile. In this work, we focus on a less-used observable capable of probing any scattering process: polarization. We implement the density matrix formalism of polarization into the Monte Carlo radiative transfer code tlac. This allows us to treat it as a quantum mechanical process where single photons develop and lose polarization from scatterings in arbitrary gas geometries. We explore static and expanding ellipsoids, biconical outflows, and clumpy multiphase media. We find that photons become increasingly polarized as they scatter and diffuse into the wings of the line profiles, making scattered Ly polarized in general. The degree and orientation of Ly polarization depends on the kinematics and distribution of the scattering HI gas. We find that it generally probes spatial or velocity space asymmetries and aligns itself tangentially to the emission source. We show that the mentioned observables, when studied separately, can leave similar signatures for different source models. We conclude by revealing how a joint analysis of the Ly spectra, surface brightness profiles, and polarization can break these degeneracies and help us extract unique physical information on galaxies and their environments from their strongest, most prominent emission line.
26 pages, 12 figures. Figure 2 and 3 reordered, Figure 11 updated. Accepted for publication in ApJ
References in corpus (19)
- The NumPy array: a structure for efficient numerical computation
- 3D Lyman-alpha radiation transfer. I. Understanding Lyman-alpha line profile morphologies
- Lyman Alpha Emitting Galaxies as a Probe of Reionization
- Quasar Quartet Embedded in Giant Nebula Reveals Rare Massive Structure in Distant Universe
- The MUSE 3D view of the Hubble Deep Field South
- Lyman-alpha spectral properties of five newly discovered Lyman continuum emitters
- The Impact of The IGM on High-Redshift Lyman Alpha Emission Lines
- The Lyman alpha Reference Sample: Extended Lyman alpha Halos Produced at Low Dust Content
- The Chandra Deep Protocluster Survey: Ly-alpha Blobs are powered by heating, not cooling
- Lyman alpha Emitting Galaxies in the Nearby Universe
- From Mirrors to Windows: Lyman-Alpha Radiative Transfer in a Very Clumpy Medium
- The Polarization of Scattered Lyman Alpha Radiation Around High-Redshift Galaxies
- Directional Lya equivalent boosting I. Spherically symmetric distributions of clumps
- On the Diffuse Lyman-alpha Halo Around Lyman-alpha Emitting Galaxies
- Ly Emitters with Very Large Ly Equivalent Widths, EW(Ly) Å, at
- Where is the fuzz? Undetected Lyman alpha nebulae around QSOs at z~2.3
- Mapping the Polarization of the Radio-Loud Ly Nebula B3 J2330+3927
- Polarization of Rayleigh scattered Lyα in active galactic nuclei
- Polarisation of submillimetre lines from interstellar medium
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- Measuring the properties of reionised bubbles with resolved Lyman alpha spectra
- The X-SHOOTER Lyman- survey at z=2 (XLS-z2) I: What makes a galaxy a Lyman- emitter?
- RASCAS: RAdiation SCattering in Astrophysical Simulations
- Deciphering Lyman blob 1 with deep MUSE observations
- Revisiting the Gas Kinematics in SSA22 Lyman- Blob 1 with Radiative Transfer Modeling in a Multiphase, Clumpy Medium
- Resolved Lyman-α properties of a luminous Lyman-break galaxy in a large ionised bubble at z = 6.53
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- Radiative Transfer in Lyα Nebulae: I. Modeling a Continuous or Clumpy Spherical Halo with a Central Source
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- Where Outflows Meet Inflows: Gas Kinematics in SSA22 Lyman- Blob 2 Decoded by Advanced Radiative Transfer Modelling
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- Lyman-α polarization from cosmological ionization fronts: I. Radiative transfer simulations
- Constraining the geometry of the gas surrounding a typical galaxy at with Ly polarization