BLAST-TNG: a next generation balloon-borne large aperture submillimeter polarimeter
Measurements of polarized thermal dust emission can be used to map magnetic fields in the interstellar medium. Recently, BLASTPol, the Balloon-borne Large Aperture Submillimeter Telescope for Polarimetry, has published the most detailed map ever made of a giant molecular cloud forming high-mass star...
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Online Access: | https://orca.cardiff.ac.uk/id/eprint/156813/ https://ui.adsabs.harvard.edu/#abs/2017AAS.22913306F |
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Measurements of polarized thermal dust emission can be used to map magnetic fields in the interstellar medium. Recently, BLASTPol, the Balloon-borne Large Aperture Submillimeter Telescope for Polarimetry, has published the most detailed map ever made of a giant molecular cloud forming high-mass stars. I will present an overview of The Next Generation BLAST polarimeter (BLAST-TNG), the successor telescope to BLASTPol, which maps linearly polarized dust emission at 250, 350 and 500 μm. BLAST-TNG utilizes a 2.5-meter carbon-fiber primary mirror that illuminates focal plane arrays containing over 3,000 microwave kinetic inductance detectors. This new polarimeter has an order of magnitude increase in mapping speed and resolution compared to BLASTPol and we expect to make over 500,000 measurements of magnetic field orientation per flight. BLAST-TNG will have the sensitivity to map entire molecular cloud complexes as well as regions of diffuse high Galactic latitude dust. It also has the resolution (FWHM = 25’’ at 250 μm) necessary to trace magnetic fields in prestellar cores and dense filaments. BLAST-TNG will thus provide a crucial link between the low resolution Planck all-sky maps and the detailed but narrow field of view polarimetry capabilities of ALMA. For our first Antarctic flight in December 2017 we are putting out a call for shared-risk proposals to fill 25% of the available science time. In addition, BLAST-TNG data will be publicly released within a year of the publication of our first look papers, leaving a large legacy data set for the study of the role played by magnetic fields in the star formation process and the properties of interstellar dust. |
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Conference Object |
author |
Fissel, Laura M. Ade, Peter Angile, Francesco E. Campbell Ashton, Peter Austermann, Jason Edward Billings, Tashalee Che, George Cho, Hsiao-Mei Cunningham, Maria R. Davis, Kristina Devlin, Mark J. Dicker, Simon Dober, Bradley Fukui, Yasuo Galitzki, Nicholas Gao, Jiansong Gordon, Sam Groppi, Christopher E. Hillbrand, Seth Hilton, Gene Hubmayr, Hannes Irwin, Kent Jones, Paul Klein, Jeffrey Li, Dale Li, Zhi-Yun Lourie, Nathan Lowe, Ian Mani, Hamdi Martin, Peter G. Mauskopf, Philip Mckenney, Christopher Nati, Federico Novak, Giles Pascale, Enzo Pisano, Giampaolo Pereira Santos, Fabio Scott, Douglas Sinclair, Adrian Diego Diego Soler, Juan Tucker, Carole Underhill, Matthew Vissers, Michael Williams, Paul |
spellingShingle |
Fissel, Laura M. Ade, Peter Angile, Francesco E. Campbell Ashton, Peter Austermann, Jason Edward Billings, Tashalee Che, George Cho, Hsiao-Mei Cunningham, Maria R. Davis, Kristina Devlin, Mark J. Dicker, Simon Dober, Bradley Fukui, Yasuo Galitzki, Nicholas Gao, Jiansong Gordon, Sam Groppi, Christopher E. Hillbrand, Seth Hilton, Gene Hubmayr, Hannes Irwin, Kent Jones, Paul Klein, Jeffrey Li, Dale Li, Zhi-Yun Lourie, Nathan Lowe, Ian Mani, Hamdi Martin, Peter G. Mauskopf, Philip Mckenney, Christopher Nati, Federico Novak, Giles Pascale, Enzo Pisano, Giampaolo Pereira Santos, Fabio Scott, Douglas Sinclair, Adrian Diego Diego Soler, Juan Tucker, Carole Underhill, Matthew Vissers, Michael Williams, Paul BLAST-TNG: a next generation balloon-borne large aperture submillimeter polarimeter |
author_facet |
Fissel, Laura M. Ade, Peter Angile, Francesco E. Campbell Ashton, Peter Austermann, Jason Edward Billings, Tashalee Che, George Cho, Hsiao-Mei Cunningham, Maria R. Davis, Kristina Devlin, Mark J. Dicker, Simon Dober, Bradley Fukui, Yasuo Galitzki, Nicholas Gao, Jiansong Gordon, Sam Groppi, Christopher E. Hillbrand, Seth Hilton, Gene Hubmayr, Hannes Irwin, Kent Jones, Paul Klein, Jeffrey Li, Dale Li, Zhi-Yun Lourie, Nathan Lowe, Ian Mani, Hamdi Martin, Peter G. Mauskopf, Philip Mckenney, Christopher Nati, Federico Novak, Giles Pascale, Enzo Pisano, Giampaolo Pereira Santos, Fabio Scott, Douglas Sinclair, Adrian Diego Diego Soler, Juan Tucker, Carole Underhill, Matthew Vissers, Michael Williams, Paul |
author_sort |
Fissel, Laura M. |
title |
BLAST-TNG: a next generation balloon-borne large aperture submillimeter polarimeter |
title_short |
BLAST-TNG: a next generation balloon-borne large aperture submillimeter polarimeter |
title_full |
BLAST-TNG: a next generation balloon-borne large aperture submillimeter polarimeter |
title_fullStr |
BLAST-TNG: a next generation balloon-borne large aperture submillimeter polarimeter |
title_full_unstemmed |
BLAST-TNG: a next generation balloon-borne large aperture submillimeter polarimeter |
title_sort |
blast-tng: a next generation balloon-borne large aperture submillimeter polarimeter |
publishDate |
2017 |
url |
https://orca.cardiff.ac.uk/id/eprint/156813/ https://ui.adsabs.harvard.edu/#abs/2017AAS.22913306F |
geographic |
Antarctic |
geographic_facet |
Antarctic |
genre |
Antarc* Antarctic |
genre_facet |
Antarc* Antarctic |
op_relation |
Fissel, Laura M., Ade, Peter https://orca.cardiff.ac.uk/view/cardiffauthors/A0479492.html orcid:0000-0002-5127-0401 orcid:0000-0002-5127-0401, Angile, Francesco E., Campbell Ashton, Peter, Austermann, Jason Edward, Billings, Tashalee, Che, George, Cho, Hsiao-Mei, Cunningham, Maria R., Davis, Kristina, Devlin, Mark J., Dicker, Simon, Dober, Bradley, Fukui, Yasuo, Galitzki, Nicholas, Gao, Jiansong, Gordon, Sam, Groppi, Christopher E., Hillbrand, Seth, Hilton, Gene, Hubmayr, Hannes, Irwin, Kent, Jones, Paul, Klein, Jeffrey, Li, Dale, Li, Zhi-Yun, Lourie, Nathan, Lowe, Ian, Mani, Hamdi, Martin, Peter G., Mauskopf, Philip, Mckenney, Christopher, Nati, Federico, Novak, Giles, Pascale, Enzo, Pisano, Giampaolo https://orca.cardiff.ac.uk/view/cardiffauthors/A047942G.html orcid:0000-0003-4302-5681 orcid:0000-0003-4302-5681, Pereira Santos, Fabio, Scott, Douglas, Sinclair, Adrian, Diego Diego Soler, Juan, Tucker, Carole https://orca.cardiff.ac.uk/view/cardiffauthors/A016987K.html orcid:0000-0002-1851-3918 orcid:0000-0002-1851-3918, Underhill, Matthew, Vissers, Michael and Williams, Paul 2017. BLAST-TNG: a next generation balloon-borne large aperture submillimeter polarimeter. Presented at: 229th Meeting of the American Astronomical Society, Grapevine, TX, United States, 03-07 January 2017. |
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ftunivcardiff:oai:https://orca.cardiff.ac.uk:156813 2023-06-11T04:06:14+02:00 BLAST-TNG: a next generation balloon-borne large aperture submillimeter polarimeter Fissel, Laura M. Ade, Peter Angile, Francesco E. Campbell Ashton, Peter Austermann, Jason Edward Billings, Tashalee Che, George Cho, Hsiao-Mei Cunningham, Maria R. Davis, Kristina Devlin, Mark J. Dicker, Simon Dober, Bradley Fukui, Yasuo Galitzki, Nicholas Gao, Jiansong Gordon, Sam Groppi, Christopher E. Hillbrand, Seth Hilton, Gene Hubmayr, Hannes Irwin, Kent Jones, Paul Klein, Jeffrey Li, Dale Li, Zhi-Yun Lourie, Nathan Lowe, Ian Mani, Hamdi Martin, Peter G. Mauskopf, Philip Mckenney, Christopher Nati, Federico Novak, Giles Pascale, Enzo Pisano, Giampaolo Pereira Santos, Fabio Scott, Douglas Sinclair, Adrian Diego Diego Soler, Juan Tucker, Carole Underhill, Matthew Vissers, Michael Williams, Paul 2017-01-31 https://orca.cardiff.ac.uk/id/eprint/156813/ https://ui.adsabs.harvard.edu/#abs/2017AAS.22913306F unknown Fissel, Laura M., Ade, Peter https://orca.cardiff.ac.uk/view/cardiffauthors/A0479492.html orcid:0000-0002-5127-0401 orcid:0000-0002-5127-0401, Angile, Francesco E., Campbell Ashton, Peter, Austermann, Jason Edward, Billings, Tashalee, Che, George, Cho, Hsiao-Mei, Cunningham, Maria R., Davis, Kristina, Devlin, Mark J., Dicker, Simon, Dober, Bradley, Fukui, Yasuo, Galitzki, Nicholas, Gao, Jiansong, Gordon, Sam, Groppi, Christopher E., Hillbrand, Seth, Hilton, Gene, Hubmayr, Hannes, Irwin, Kent, Jones, Paul, Klein, Jeffrey, Li, Dale, Li, Zhi-Yun, Lourie, Nathan, Lowe, Ian, Mani, Hamdi, Martin, Peter G., Mauskopf, Philip, Mckenney, Christopher, Nati, Federico, Novak, Giles, Pascale, Enzo, Pisano, Giampaolo https://orca.cardiff.ac.uk/view/cardiffauthors/A047942G.html orcid:0000-0003-4302-5681 orcid:0000-0003-4302-5681, Pereira Santos, Fabio, Scott, Douglas, Sinclair, Adrian, Diego Diego Soler, Juan, Tucker, Carole https://orca.cardiff.ac.uk/view/cardiffauthors/A016987K.html orcid:0000-0002-1851-3918 orcid:0000-0002-1851-3918, Underhill, Matthew, Vissers, Michael and Williams, Paul 2017. BLAST-TNG: a next generation balloon-borne large aperture submillimeter polarimeter. Presented at: 229th Meeting of the American Astronomical Society, Grapevine, TX, United States, 03-07 January 2017. Conference or Workshop Item PeerReviewed 2017 ftunivcardiff 2023-05-04T22:39:16Z Measurements of polarized thermal dust emission can be used to map magnetic fields in the interstellar medium. Recently, BLASTPol, the Balloon-borne Large Aperture Submillimeter Telescope for Polarimetry, has published the most detailed map ever made of a giant molecular cloud forming high-mass stars. I will present an overview of The Next Generation BLAST polarimeter (BLAST-TNG), the successor telescope to BLASTPol, which maps linearly polarized dust emission at 250, 350 and 500 μm. BLAST-TNG utilizes a 2.5-meter carbon-fiber primary mirror that illuminates focal plane arrays containing over 3,000 microwave kinetic inductance detectors. This new polarimeter has an order of magnitude increase in mapping speed and resolution compared to BLASTPol and we expect to make over 500,000 measurements of magnetic field orientation per flight. BLAST-TNG will have the sensitivity to map entire molecular cloud complexes as well as regions of diffuse high Galactic latitude dust. It also has the resolution (FWHM = 25’’ at 250 μm) necessary to trace magnetic fields in prestellar cores and dense filaments. BLAST-TNG will thus provide a crucial link between the low resolution Planck all-sky maps and the detailed but narrow field of view polarimetry capabilities of ALMA. For our first Antarctic flight in December 2017 we are putting out a call for shared-risk proposals to fill 25% of the available science time. In addition, BLAST-TNG data will be publicly released within a year of the publication of our first look papers, leaving a large legacy data set for the study of the role played by magnetic fields in the star formation process and the properties of interstellar dust. Conference Object Antarc* Antarctic Cardiff University: ORCA (Online Research @ Cardiff) Antarctic |