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Microwave Spectro-Polarimetry of Matter and Radiation across Space and Time
This paper discusses the science case for a sensitive spectro-polarimetric survey of the microwave sky. Such a survey would provide a tomographic and dynamic census of the three-dimensional distribution of hot gas, velocity flows, early metals, dust, and mass distribution in the entire Hubble volume...
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Published in: | arXiv.org 2019-09 |
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creator | Delabrouille, Jacques Abitbol, Maximilian H Aghanim, Nabila Ali-Haimoud, Yacine Alonso, David Alvarez, Marcelo Banday, Anthony J Bartlett, James G Baselmans, Jochem Basu, Kaustuv Battaglia, Nicholas Jose Ramon Bermejo Climent Bernal, Jose L Béthermin, Matthieu Bolliet, Boris Bonato, Matteo Bouchet, François R Breysse, Patrick C Burigana, Carlo Zhen-Yi Cai Chluba, Jens Churazov, Eugene Dannerbauer, Helmut De Bernardis, Paolo De Zotti, Gianfranco Eleonora Di Valentino Dimastrogiovanni, Emanuela Endo, Akira Erler, Jens Ferraro, Simone Finelli, Fabio Fixsen, Dale Hanany, Shaul Hart, Luke Hernandez-Monteagudo, Carlos Hill, J Colin Hotinli, Selim C Karatsu, Kenichi Karkare, Kirit Keating, Garrett K Khabibullin, Ildar Kogut, Alan Kohri, Kazunori Kovetz, Ely D Lagache, Guilaine Lesgourgues, Julien Madhavacheril, Mathew Maffei, Bruno Mandolesi, Nazzareno Martins, Carlos Masi, Silvia Mather, John Melin, Jean-Baptiste Dizgah, Azadeh Moradinezhad Mroczkowski, Tony Mukherjee, Suvodip Nagai, Daisuke Negrello, Mattia Palanque-Delabrouille, Nathalie Paoletti, Daniela Patil, Subodh P Piacentini, Francesco Raghunathan, Srinivasan Ravenni, Andrea Remazeilles, Mathieu Revéret, Vincent Rodriguez, Louis Rotti, Aditya Jose-Alberto Rubino Martin Sayers, Jack Scott, Douglas Silk, Joseph Silva, Marta Souradeep, Tarun Sugiyama, Naonori Sunyaev, Rashid Switzer, Eric R Tartari, Andrea Trombetti, Tiziana Zubeldia, Inigo |
description | This paper discusses the science case for a sensitive spectro-polarimetric survey of the microwave sky. Such a survey would provide a tomographic and dynamic census of the three-dimensional distribution of hot gas, velocity flows, early metals, dust, and mass distribution in the entire Hubble volume, exploit CMB temperature and polarisation anisotropies down to fundamental limits, and track energy injection and absorption into the radiation background across cosmic times by measuring spectral distortions of the CMB blackbody emission. In addition to its exceptional capability for cosmology and fundamental physics, such a survey would provide an unprecedented view of microwave emissions at sub-arcminute to few-arcminute angular resolution in hundreds of frequency channels, a data set that would be of immense legacy value for many branches of astrophysics. We propose that this survey be carried-out with a large space mission featuring a broad-band polarised imager and a moderate resolution spectro-imager at the focus of a 3.5m aperture telescope actively cooled to about 8K, complemented with absolutely-calibrated Fourier Transform Spectrometer modules observing at degree-scale angular resolution in the 10-2000 GHz frequency range. We propose two observing modes: a survey mode to map the entire sky as well as a few selected wide fields, and an observatory mode for deeper observations of regions of specific interest. |
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Such a survey would provide a tomographic and dynamic census of the three-dimensional distribution of hot gas, velocity flows, early metals, dust, and mass distribution in the entire Hubble volume, exploit CMB temperature and polarisation anisotropies down to fundamental limits, and track energy injection and absorption into the radiation background across cosmic times by measuring spectral distortions of the CMB blackbody emission. In addition to its exceptional capability for cosmology and fundamental physics, such a survey would provide an unprecedented view of microwave emissions at sub-arcminute to few-arcminute angular resolution in hundreds of frequency channels, a data set that would be of immense legacy value for many branches of astrophysics. We propose that this survey be carried-out with a large space mission featuring a broad-band polarised imager and a moderate resolution spectro-imager at the focus of a 3.5m aperture telescope actively cooled to about 8K, complemented with absolutely-calibrated Fourier Transform Spectrometer modules observing at degree-scale angular resolution in the 10-2000 GHz frequency range. 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Such a survey would provide a tomographic and dynamic census of the three-dimensional distribution of hot gas, velocity flows, early metals, dust, and mass distribution in the entire Hubble volume, exploit CMB temperature and polarisation anisotropies down to fundamental limits, and track energy injection and absorption into the radiation background across cosmic times by measuring spectral distortions of the CMB blackbody emission. In addition to its exceptional capability for cosmology and fundamental physics, such a survey would provide an unprecedented view of microwave emissions at sub-arcminute to few-arcminute angular resolution in hundreds of frequency channels, a data set that would be of immense legacy value for many branches of astrophysics. We propose that this survey be carried-out with a large space mission featuring a broad-band polarised imager and a moderate resolution spectro-imager at the focus of a 3.5m aperture telescope actively cooled to about 8K, complemented with absolutely-calibrated Fourier Transform Spectrometer modules observing at degree-scale angular resolution in the 10-2000 GHz frequency range. We propose two observing modes: a survey mode to map the entire sky as well as a few selected wide fields, and an observatory mode for deeper observations of regions of specific interest.</description><subject>Angular resolution</subject><subject>Apertures</subject><subject>Astrophysics</subject><subject>Background radiation</subject><subject>Blackbody</subject><subject>Cosmic microwave background</subject><subject>Cosmology</subject><subject>Fourier transform spectrometers</subject><subject>Frequency ranges</subject><subject>Mass distribution</subject><subject>Polarimetry</subject><subject>Sky surveys (astronomy)</subject><subject>Space missions</subject><subject>Space telescopes</subject><issn>2331-8422</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2019</creationdate><recordtype>article</recordtype><sourceid>PIMPY</sourceid><recordid>eNqNy8EKgkAUheEhCJLyHQZaCzajNfsoghCi3MtFrzBiXrszFr19Q_QArc7iP99MRErrTWIypRYidq5L01RtdyrPdSTOha2ZXvBEeRux9kzJhXpge0fPb0mtLMB7ZAlDI6_QWPCWBgkBORcI1PhNZQArMW-hdxj_dinWx0O5PyUj02NC56uOJh5CqpQymckzbTb6v9cHACc85Q</recordid><startdate>20190904</startdate><enddate>20190904</enddate><creator>Delabrouille, Jacques</creator><creator>Abitbol, Maximilian H</creator><creator>Aghanim, Nabila</creator><creator>Ali-Haimoud, Yacine</creator><creator>Alonso, David</creator><creator>Alvarez, Marcelo</creator><creator>Banday, Anthony J</creator><creator>Bartlett, James G</creator><creator>Baselmans, Jochem</creator><creator>Basu, Kaustuv</creator><creator>Battaglia, Nicholas</creator><creator>Jose Ramon Bermejo Climent</creator><creator>Bernal, Jose L</creator><creator>Béthermin, 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Maximilian H ; Aghanim, Nabila ; Ali-Haimoud, Yacine ; Alonso, David ; Alvarez, Marcelo ; Banday, Anthony J ; Bartlett, James G ; Baselmans, Jochem ; Basu, Kaustuv ; Battaglia, Nicholas ; Jose Ramon Bermejo Climent ; Bernal, Jose L ; Béthermin, Matthieu ; Bolliet, Boris ; Bonato, Matteo ; Bouchet, François R ; Breysse, Patrick C ; Burigana, Carlo ; Zhen-Yi Cai ; Chluba, Jens ; Churazov, Eugene ; Dannerbauer, Helmut ; De Bernardis, Paolo ; De Zotti, Gianfranco ; Eleonora Di Valentino ; Dimastrogiovanni, Emanuela ; Endo, Akira ; Erler, Jens ; Ferraro, Simone ; Finelli, Fabio ; Fixsen, Dale ; Hanany, Shaul ; Hart, Luke ; Hernandez-Monteagudo, Carlos ; Hill, J Colin ; Hotinli, Selim C ; Karatsu, Kenichi ; Karkare, Kirit ; Keating, Garrett K ; Khabibullin, Ildar ; Kogut, Alan ; Kohri, Kazunori ; Kovetz, Ely D ; Lagache, Guilaine ; Lesgourgues, Julien ; Madhavacheril, Mathew ; Maffei, Bruno ; Mandolesi, Nazzareno ; Martins, Carlos ; Masi, Silvia ; Mather, John ; Melin, Jean-Baptiste ; Dizgah, Azadeh Moradinezhad ; Mroczkowski, Tony ; Mukherjee, Suvodip ; Nagai, Daisuke ; Negrello, Mattia ; Palanque-Delabrouille, Nathalie ; Paoletti, Daniela ; Patil, Subodh P ; Piacentini, Francesco ; Raghunathan, Srinivasan ; Ravenni, Andrea ; Remazeilles, Mathieu ; Revéret, Vincent ; Rodriguez, Louis ; Rotti, Aditya ; Jose-Alberto Rubino Martin ; Sayers, Jack ; Scott, Douglas ; Silk, Joseph ; Silva, Marta ; Souradeep, Tarun ; Sugiyama, Naonori ; Sunyaev, Rashid ; Switzer, Eric R ; Tartari, Andrea ; Trombetti, Tiziana ; Zubeldia, Inigo</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-proquest_journals_22848543813</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2019</creationdate><topic>Angular resolution</topic><topic>Apertures</topic><topic>Astrophysics</topic><topic>Background radiation</topic><topic>Blackbody</topic><topic>Cosmic microwave background</topic><topic>Cosmology</topic><topic>Fourier 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Naonori</creatorcontrib><creatorcontrib>Sunyaev, Rashid</creatorcontrib><creatorcontrib>Switzer, Eric R</creatorcontrib><creatorcontrib>Tartari, Andrea</creatorcontrib><creatorcontrib>Trombetti, Tiziana</creatorcontrib><creatorcontrib>Zubeldia, Inigo</creatorcontrib><collection>ProQuest SciTech Collection</collection><collection>ProQuest Technology Collection</collection><collection>Materials Science & Engineering Collection</collection><collection>ProQuest Central (Alumni)</collection><collection>ProQuest Central</collection><collection>ProQuest Central Essentials</collection><collection>AUTh Library subscriptions: ProQuest Central</collection><collection>Technology Collection</collection><collection>ProQuest One Community College</collection><collection>ProQuest Central Korea</collection><collection>SciTech Premium Collection</collection><collection>ProQuest Engineering Collection</collection><collection>Engineering Database</collection><collection>Publicly Available Content Database</collection><collection>ProQuest One Academic Eastern Edition (DO NOT USE)</collection><collection>ProQuest One Academic</collection><collection>ProQuest One Academic UKI Edition</collection><collection>ProQuest Central China</collection><collection>Engineering Collection</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Delabrouille, Jacques</au><au>Abitbol, Maximilian H</au><au>Aghanim, Nabila</au><au>Ali-Haimoud, Yacine</au><au>Alonso, David</au><au>Alvarez, Marcelo</au><au>Banday, Anthony J</au><au>Bartlett, James G</au><au>Baselmans, Jochem</au><au>Basu, Kaustuv</au><au>Battaglia, Nicholas</au><au>Jose Ramon Bermejo Climent</au><au>Bernal, Jose L</au><au>Béthermin, Matthieu</au><au>Bolliet, Boris</au><au>Bonato, Matteo</au><au>Bouchet, François R</au><au>Breysse, Patrick C</au><au>Burigana, Carlo</au><au>Zhen-Yi Cai</au><au>Chluba, Jens</au><au>Churazov, Eugene</au><au>Dannerbauer, Helmut</au><au>De Bernardis, Paolo</au><au>De Zotti, Gianfranco</au><au>Eleonora Di Valentino</au><au>Dimastrogiovanni, Emanuela</au><au>Endo, Akira</au><au>Erler, Jens</au><au>Ferraro, Simone</au><au>Finelli, Fabio</au><au>Fixsen, Dale</au><au>Hanany, Shaul</au><au>Hart, Luke</au><au>Hernandez-Monteagudo, Carlos</au><au>Hill, J Colin</au><au>Hotinli, Selim C</au><au>Karatsu, Kenichi</au><au>Karkare, Kirit</au><au>Keating, Garrett K</au><au>Khabibullin, Ildar</au><au>Kogut, Alan</au><au>Kohri, Kazunori</au><au>Kovetz, Ely D</au><au>Lagache, Guilaine</au><au>Lesgourgues, Julien</au><au>Madhavacheril, Mathew</au><au>Maffei, Bruno</au><au>Mandolesi, Nazzareno</au><au>Martins, Carlos</au><au>Masi, Silvia</au><au>Mather, John</au><au>Melin, Jean-Baptiste</au><au>Dizgah, Azadeh Moradinezhad</au><au>Mroczkowski, Tony</au><au>Mukherjee, Suvodip</au><au>Nagai, Daisuke</au><au>Negrello, Mattia</au><au>Palanque-Delabrouille, Nathalie</au><au>Paoletti, Daniela</au><au>Patil, Subodh P</au><au>Piacentini, Francesco</au><au>Raghunathan, Srinivasan</au><au>Ravenni, Andrea</au><au>Remazeilles, Mathieu</au><au>Revéret, Vincent</au><au>Rodriguez, Louis</au><au>Rotti, Aditya</au><au>Jose-Alberto Rubino Martin</au><au>Sayers, Jack</au><au>Scott, Douglas</au><au>Silk, Joseph</au><au>Silva, Marta</au><au>Souradeep, Tarun</au><au>Sugiyama, Naonori</au><au>Sunyaev, Rashid</au><au>Switzer, Eric R</au><au>Tartari, Andrea</au><au>Trombetti, Tiziana</au><au>Zubeldia, Inigo</au><format>book</format><genre>document</genre><ristype>GEN</ristype><atitle>Microwave Spectro-Polarimetry of Matter and Radiation across Space and Time</atitle><jtitle>arXiv.org</jtitle><date>2019-09-04</date><risdate>2019</risdate><eissn>2331-8422</eissn><abstract>This paper discusses the science case for a sensitive spectro-polarimetric survey of the microwave sky. Such a survey would provide a tomographic and dynamic census of the three-dimensional distribution of hot gas, velocity flows, early metals, dust, and mass distribution in the entire Hubble volume, exploit CMB temperature and polarisation anisotropies down to fundamental limits, and track energy injection and absorption into the radiation background across cosmic times by measuring spectral distortions of the CMB blackbody emission. In addition to its exceptional capability for cosmology and fundamental physics, such a survey would provide an unprecedented view of microwave emissions at sub-arcminute to few-arcminute angular resolution in hundreds of frequency channels, a data set that would be of immense legacy value for many branches of astrophysics. We propose that this survey be carried-out with a large space mission featuring a broad-band polarised imager and a moderate resolution spectro-imager at the focus of a 3.5m aperture telescope actively cooled to about 8K, complemented with absolutely-calibrated Fourier Transform Spectrometer modules observing at degree-scale angular resolution in the 10-2000 GHz frequency range. We propose two observing modes: a survey mode to map the entire sky as well as a few selected wide fields, and an observatory mode for deeper observations of regions of specific interest.</abstract><cop>Ithaca</cop><pub>Cornell University Library, arXiv.org</pub><oa>free_for_read</oa></addata></record> |
fulltext | fulltext |
identifier | EISSN: 2331-8422 |
ispartof | arXiv.org, 2019-09 |
issn | 2331-8422 |
language | eng |
recordid | cdi_proquest_journals_2284854381 |
source | Publicly Available Content Database |
subjects | Angular resolution Apertures Astrophysics Background radiation Blackbody Cosmic microwave background Cosmology Fourier transform spectrometers Frequency ranges Mass distribution Polarimetry Sky surveys (astronomy) Space missions Space telescopes |
title | Microwave Spectro-Polarimetry of Matter and Radiation across Space and Time |
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