Extragalactic Magnetism with SOFIA (SALSA Legacy Program). VII. A Tomographic View of Far-infrared and Radio Polarimetric Observations through MHD Simulations of Galaxies

Fuente: arXiv
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Autori principali: Martin-Alvarez, Sergio, Lopez-Rodriguez, Enrique, Dacunha, Tara, Clark, Susan E., Borlaff, Alejandro S., Beck, Rainer, Montero, Francisco Rodríguez, Jung, S. Lyla, Devriendt, Julien, Slyz, Adrianne, Roman-Duval, Julia, Ntormousi, Evangelia, Tahani, Mehrnoosh, Subramanian, Kandaswamy, Dale, Daniel A., Marcum, Pamela M., Tassis, Konstantinos, del Moral-Castro, Ignacio, Tram, Le Ngoc, Jarvis, Matt J.
Natura: Preprint
Pubblicazione: 2023
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author Martin-Alvarez, Sergio
Lopez-Rodriguez, Enrique
Dacunha, Tara
Clark, Susan E.
Borlaff, Alejandro S.
Beck, Rainer
Montero, Francisco Rodríguez
Jung, S. Lyla
Devriendt, Julien
Slyz, Adrianne
Roman-Duval, Julia
Ntormousi, Evangelia
Tahani, Mehrnoosh
Subramanian, Kandaswamy
Dale, Daniel A.
Marcum, Pamela M.
Tassis, Konstantinos
del Moral-Castro, Ignacio
Tram, Le Ngoc
Jarvis, Matt J.
author_facet Martin-Alvarez, Sergio
Lopez-Rodriguez, Enrique
Dacunha, Tara
Clark, Susan E.
Borlaff, Alejandro S.
Beck, Rainer
Montero, Francisco Rodríguez
Jung, S. Lyla
Devriendt, Julien
Slyz, Adrianne
Roman-Duval, Julia
Ntormousi, Evangelia
Tahani, Mehrnoosh
Subramanian, Kandaswamy
Dale, Daniel A.
Marcum, Pamela M.
Tassis, Konstantinos
del Moral-Castro, Ignacio
Tram, Le Ngoc
Jarvis, Matt J.
contents The structure of magnetic fields in galaxies remains poorly constrained, despite the importance of magnetism in the evolution of galaxies. Radio synchrotron and far-infrared (FIR) polarization and polarimetric observations are the best methods to measure galactic scale properties of magnetic fields in galaxies beyond the Milky Way. We use synthetic polarimetric observations of a simulated galaxy to identify and quantify the regions, scales, and interstellar medium (ISM) phases probed at FIR and radio wavelengths. Our studied suite of magnetohydrodynamical cosmological zoom-in simulations features high-resolutions (10 pc full-cell size) and multiple magnetization models. Our synthetic observations have a striking resemblance to those of observed galaxies. We find that the total and polarized radio emission extends to approximately double the altitude above the galactic disk (half-intensity disk thickness of $h_\text{I radio} \sim h_\text{PI radio} = 0.23 \pm 0.03$ kpc) relative to the total FIR and polarized emission that are concentrated in the disk midplane ($h_\text{I FIR} \sim h_\text{PI FIR} = 0.11 \pm 0.01$ kpc). Radio emission traces magnetic fields at scales of $\gtrsim 300$ pc, whereas FIR emission probes magnetic fields at the smallest scales of our simulations. These scales are comparable to our spatial resolution and well below the spatial resolution ($<300$ pc) of existing FIR polarimetric measurements. Finally, we confirm that synchrotron emission traces a combination of the warm neutral and cold neutral gas phases, whereas FIR emission follows the densest gas in the cold neutral phase in the simulation. These results are independent of the ISM magnetic field strength. The complementarity we measure between radio and FIR wavelengths motivates future multiwavelength polarimetric observations to advance our knowledge of extragalactic magnetism.
format Preprint
id arxiv_https___arxiv_org_abs_2311_06356
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Extragalactic Magnetism with SOFIA (SALSA Legacy Program). VII. A Tomographic View of Far-infrared and Radio Polarimetric Observations through MHD Simulations of Galaxies
Martin-Alvarez, Sergio
Lopez-Rodriguez, Enrique
Dacunha, Tara
Clark, Susan E.
Borlaff, Alejandro S.
Beck, Rainer
Montero, Francisco Rodríguez
Jung, S. Lyla
Devriendt, Julien
Slyz, Adrianne
Roman-Duval, Julia
Ntormousi, Evangelia
Tahani, Mehrnoosh
Subramanian, Kandaswamy
Dale, Daniel A.
Marcum, Pamela M.
Tassis, Konstantinos
del Moral-Castro, Ignacio
Tram, Le Ngoc
Jarvis, Matt J.
Astrophysics of Galaxies
The structure of magnetic fields in galaxies remains poorly constrained, despite the importance of magnetism in the evolution of galaxies. Radio synchrotron and far-infrared (FIR) polarization and polarimetric observations are the best methods to measure galactic scale properties of magnetic fields in galaxies beyond the Milky Way. We use synthetic polarimetric observations of a simulated galaxy to identify and quantify the regions, scales, and interstellar medium (ISM) phases probed at FIR and radio wavelengths. Our studied suite of magnetohydrodynamical cosmological zoom-in simulations features high-resolutions (10 pc full-cell size) and multiple magnetization models. Our synthetic observations have a striking resemblance to those of observed galaxies. We find that the total and polarized radio emission extends to approximately double the altitude above the galactic disk (half-intensity disk thickness of $h_\text{I radio} \sim h_\text{PI radio} = 0.23 \pm 0.03$ kpc) relative to the total FIR and polarized emission that are concentrated in the disk midplane ($h_\text{I FIR} \sim h_\text{PI FIR} = 0.11 \pm 0.01$ kpc). Radio emission traces magnetic fields at scales of $\gtrsim 300$ pc, whereas FIR emission probes magnetic fields at the smallest scales of our simulations. These scales are comparable to our spatial resolution and well below the spatial resolution ($<300$ pc) of existing FIR polarimetric measurements. Finally, we confirm that synchrotron emission traces a combination of the warm neutral and cold neutral gas phases, whereas FIR emission follows the densest gas in the cold neutral phase in the simulation. These results are independent of the ISM magnetic field strength. The complementarity we measure between radio and FIR wavelengths motivates future multiwavelength polarimetric observations to advance our knowledge of extragalactic magnetism.
title Extragalactic Magnetism with SOFIA (SALSA Legacy Program). VII. A Tomographic View of Far-infrared and Radio Polarimetric Observations through MHD Simulations of Galaxies
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2311.06356