The BLAST Observatory: A Sensitivity Study for Far-IR Balloon-borne Polarimeters

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Main Authors: The BLAST Observatory Collaboration, Coppi, Gabriele, Dicker, Simon, Aguirre, James E., Austermann, Jason E., Beall, James A., Clark, Susan E., Cox, Erin G., Devlin, Mark J., Fissel, Laura M., Galitzki, Nicholas, Hensley, Brandon S., Hubmayr, Johannes, Molinari, Sergio, Nati, Federico, Novak, Giles, Schisano, Eugenio, Soler, Juan D., Tucker, Carole E., Ullom, Joel N., Vaskuri, Anna, Vissers, Michael R., Wheeler, Jordan D., Zannoni, Mario
Format: Preprint
Published: 2024
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author The BLAST Observatory Collaboration
Coppi, Gabriele
Dicker, Simon
Aguirre, James E.
Austermann, Jason E.
Beall, James A.
Clark, Susan E.
Cox, Erin G.
Devlin, Mark J.
Fissel, Laura M.
Galitzki, Nicholas
Hensley, Brandon S.
Hubmayr, Johannes
Molinari, Sergio
Nati, Federico
Novak, Giles
Schisano, Eugenio
Soler, Juan D.
Tucker, Carole E.
Ullom, Joel N.
Vaskuri, Anna
Vissers, Michael R.
Wheeler, Jordan D.
Zannoni, Mario
author_facet The BLAST Observatory Collaboration
Coppi, Gabriele
Dicker, Simon
Aguirre, James E.
Austermann, Jason E.
Beall, James A.
Clark, Susan E.
Cox, Erin G.
Devlin, Mark J.
Fissel, Laura M.
Galitzki, Nicholas
Hensley, Brandon S.
Hubmayr, Johannes
Molinari, Sergio
Nati, Federico
Novak, Giles
Schisano, Eugenio
Soler, Juan D.
Tucker, Carole E.
Ullom, Joel N.
Vaskuri, Anna
Vissers, Michael R.
Wheeler, Jordan D.
Zannoni, Mario
contents Sensitive wide-field observations of polarized thermal emission from interstellar dust grains will allow astronomers to address key outstanding questions about the life cycle of matter and energy driving the formation of stars and the evolution of galaxies. Stratospheric balloon-borne telescopes can map this polarized emission at far-infrared wavelengths near the peak of the dust thermal spectrum - wavelengths that are inaccessible from the ground. In this paper we address the sensitivity achievable by a Super Pressure Balloon (SPB) polarimetry mission, using as an example the Balloon-borne Large Aperture Submillimeter Telescope (BLAST) Observatory. By launching from Wanaka, New Zealand, BLAST Observatory can obtain a 30-day flight with excellent sky coverage - overcoming limitations of past experiments that suffered from short flight duration and/or launch sites with poor coverage of nearby star-forming regions. This proposed polarimetry mission will map large regions of the sky at sub-arcminute resolution, with simultaneous observations at 175, 250, and 350 $μm$, using a total of 8274 microwave kinetic inductance detectors. Here, we describe the scientific motivation for the BLAST Observatory, the proposed implementation, and the forecasting methods used to predict its sensitivity. We also compare our forecasted experiment sensitivity with other facilities.
format Preprint
id arxiv_https___arxiv_org_abs_2401_14370
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The BLAST Observatory: A Sensitivity Study for Far-IR Balloon-borne Polarimeters
The BLAST Observatory Collaboration
Coppi, Gabriele
Dicker, Simon
Aguirre, James E.
Austermann, Jason E.
Beall, James A.
Clark, Susan E.
Cox, Erin G.
Devlin, Mark J.
Fissel, Laura M.
Galitzki, Nicholas
Hensley, Brandon S.
Hubmayr, Johannes
Molinari, Sergio
Nati, Federico
Novak, Giles
Schisano, Eugenio
Soler, Juan D.
Tucker, Carole E.
Ullom, Joel N.
Vaskuri, Anna
Vissers, Michael R.
Wheeler, Jordan D.
Zannoni, Mario
Instrumentation and Methods for Astrophysics
Sensitive wide-field observations of polarized thermal emission from interstellar dust grains will allow astronomers to address key outstanding questions about the life cycle of matter and energy driving the formation of stars and the evolution of galaxies. Stratospheric balloon-borne telescopes can map this polarized emission at far-infrared wavelengths near the peak of the dust thermal spectrum - wavelengths that are inaccessible from the ground. In this paper we address the sensitivity achievable by a Super Pressure Balloon (SPB) polarimetry mission, using as an example the Balloon-borne Large Aperture Submillimeter Telescope (BLAST) Observatory. By launching from Wanaka, New Zealand, BLAST Observatory can obtain a 30-day flight with excellent sky coverage - overcoming limitations of past experiments that suffered from short flight duration and/or launch sites with poor coverage of nearby star-forming regions. This proposed polarimetry mission will map large regions of the sky at sub-arcminute resolution, with simultaneous observations at 175, 250, and 350 $μm$, using a total of 8274 microwave kinetic inductance detectors. Here, we describe the scientific motivation for the BLAST Observatory, the proposed implementation, and the forecasting methods used to predict its sensitivity. We also compare our forecasted experiment sensitivity with other facilities.
title The BLAST Observatory: A Sensitivity Study for Far-IR Balloon-borne Polarimeters
topic Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2401.14370