Nicola Vittorio
University of Rome Tor Vergata
429 Papers
20.4K Citations
Nicola Vittorio is an academic researcher from University of Rome Tor Vergata. The author has contributed to research in topics: Cosmic microwave background & Planck. The author has an hindex of 117, co-authored 416 publications. Previous affiliations of Nicola Vittorio include Istituto Nazionale di Fisica Nucleare & Sapienza University of Rome.
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Papers
Planck Early Results. II. The thermal performance of Planck
Peter A. R. Ade,Nabila Aghanim,M. Arnaud,M. Ashdown,Jonathan Aumont,C. Baccigalupi,M. D. Baker,Amedeo Balbi,A. J. Banday,R. B. Barreiro,E. Battaner,K. Benabed,Alain Benoit,J.-P. Bernard,Marco Bersanelli,Pradeep Bhandari,R. S. Bhatia,J. J. Bock,Anna Bonaldi,J. R. Bond,J. Borders,J. Borrill,François R. Bouchet,B. Bowman,Tom Bradshaw,E. Bréelle,M. Bucher,Carlo Burigana,R. C. Butler,P. Cabella,Ph. Camus,Christopher Cantalupo,B. Cappellini,Jean-François Cardoso,A. Catalano,L. Cayón,Anthony Challinor,A. Chamballu,J. P. Chambelland,J. Charra,M. Charra,Lung-Yih Chiang,C. Chiang,P. R. Christensen,D. L. Clements,B. Collaudin,Stéphane Colombi,F. Couchot,A. Coulais,B. P. Crill,Martin Crook,F. Cuttaia,C. Damasio,L. Danese,R. D. Davies,R. J. Davis,P. de Bernardis,G. de Gasperis,A. de Rosa,Jacques Delabrouille,J.-M. Delouis,F.-X. Désert,U. Doerl,Klaus Dolag,S. Donzelli,O. Doré,M. Douspis,X. Dupac,George Efstathiou,Torsten A. Enßlin,H. K. Eriksen,Fabio Finelli,Suzanne Foley,Olivier Forni,P. Fosalba,J. J. Fourmond,M. Frailis,E. Franceschi,S. Galeotta,K. Ganga,E. Gavila,M. Giard,Giovanna Giardino,Y. Giraud-Héraud,J. González-Nuevo,K. M. Górski,Steven Gratton,A. Gregorio,A. Gruppuso,G. Guyot,D. L. Harrison,George Helou,Sophie Henrot-Versille,C. Hernández-Monteagudo,D. Herranz,S. R. Hildebrandt,E. Hivon,Michael P. Hobson,W. A. Holmes,Allan Hornstrup,W. Hovest,Roger J. Hoyland,Kevin M. Huffenberger,Ulf E. Israelsson,Andrew H. Jaffe,W. C. Jones,Mika Juvela,E. Keihänen,R. Keskitalo,Theodore Kisner,R. Kneissl,Lloyd Knox,Hannu Kurki-Suonio,G. Lagache,J.-M. Lamarre,P. Lami,Anthony Lasenby,R. J. Laureijs,Charles R. Lawrence,S. Leach,R. Leonardi,Claude Leroy,P. B. Lilje,M. López-Caniego,Philip Lubin,J. F. Macías-Pérez,Thierry Maciaszek,C. J. MacTavish,Bruno Maffei,Davide Maino,Nazzareno Mandolesi,Robert G. Mann,Michele Maris,E. Martínez-González,Silvia Masi,Sabino Matarrese,F. Matthai,Pasquale Mazzotta,Peregrine McGehee,Peter Meinhold,Alessandro Melchiorri,F. Melot,L. Mendes,A. Mennella,Marc-Antoine Miville-Deschenes,A. Moneti,L. Montier,J. Mora,Gianluca Morgante,N. Morisset,Daniel J. Mortlock,Dipak Munshi,Anna Murphy,Pavel D. Naselsky,A. Nash,P. Natoli,Calvin B. Netterfield,Dmitry Novikov,I. D. Novikov,I. J. O'Dwyer,S. Osborne,F. Pajot,Fabio Pasian,G. Patanchon,David Pearson,O. Perdereau,L. Perotto,F. Perrotta,F. Piacentini,M. Piat,Stéphane Plaszczynski,Paola Platania,E. Pointecouteau,G. Polenta,N. Ponthieu,T. Poutanen,G. Prézeau,M. Prina,Simon Prunet,J.-L. Puget,Jörg P. Rachen,Rafael Rebolo,Martin Reinecke,C. Renault,S. Ricciardi,T. Riller,I. Ristorcelli,G. Rocha,C. Rosset,J. A. Rubiino-Martin,Ben Rusholme,M. Sandri,D. Santos,Bjoern Malte Schaefer,Douglas Scott,M. D. Seiffert,P. Shellard,G. F. Smoot,Jean-Luc Starck,P. Stassi,F. Stivoli,V. Stolyarov,R. Stompor,R. V. Sudiwala,J.-F. Sygnet,J. A. Tauber,Luca Terenzi,L. Toffolatti,M. Tomasi,J.-P. Torre,M. Tristram,Jussi Tuovinen,Luca Valenziano,L. Vibert,P. Vielva,F. Villa,Nicola Vittorio,Lawrence A. Wade,Benjamin D. Wandelt,Christer Watson,S. D. M. White,Althea Wilkinson,P. R. Wilson,D. Yvon,A. Zacchei,B. Zhang,A. Zonca +226 more
TL;DR: In this paper, the performance of the Planck instruments in space is enabled by their low operating temperatures, 20K for LFI and 0.1K for HFI, achieved through a combination of passive radiative cooling and three active mechanical coolers.
Instrument, Method, Brightness and Polarization Maps from the 2003 flight of BOOMERanG
Silvia Masi,Peter A. R. Ade,James J. Bock,J. R. Bond,J. Borrill,A. Boscaleri,P. Cabella,Carlo R. Contaldi,B. P. Crill,P. de Bernardis,G. de Gasperis,A. de Oliveira-Costa,G. De Troia,G. Di Stefano,P. Ehlers,E. Hivon,Hristov,A. Iacoangeli,Andrew H. Jaffe,W. C. Jones,Theodore Kisner,Andrew E. Lange,C. J. MacTavish,C. Marini-Bettolo,Peter Mason,Philip Daniel Mauskopf,T. E. Montroy,Federico Nati,L. Nati,P. Natoli,Calvin B. Netterfield,Enzo Pascale,F. Piacentini,Dmitry Pogosyan,G. Polenta,Simon Prunet,S. Ricciardi,Giovanni Romeo,J. E. Ruhl,Paola Santini,Max Tegmark,E. Torbet,M. Veneziani,Nicola Vittorio +43 more
TL;DR: The BOOMERanG-03 experiment and maps of the Stokes parameters I, Q, U of the microwave sky obtained during a 14-day balloon flight in 2003 are presented in this paper.
89
Updated design of the CMB polarization experiment satellite LiteBIRD
Hajime Sugai,Peter A. R. Ade,Y. Akiba,David Alonso,Kam Arnold,Jonathan Aumont,J. E. Austermann,C. Baccigalupi,A. J. Banday,R. Banerji,R. B. Barreiro,Soumen Basak,J. A. Beall,S. Beckman,Marco Bersanelli,Julian Borrill,F. Boulanger,Michael L. Brown,M. Bucher,Alessandro Buzzelli,Erminia Calabrese,F. J. Casas,Anthony Challinor,V. Chan,Yuji Chinone,J. F. Cliche,F. Columbro,A. Cukierman,D. W. Curtis,P. Danto,P. de Bernardis,T. de Haan,M. De Petris,Clive Dickinson,M. A. Dobbs,Tadayasu Dotani,L. Duband,A. Ducout,Shannon M. Duff,Adriaan J. Duivenvoorden,J. M. Duval,K. Ebisawa,Tucker Elleflot,H. Enokida,H. K. Eriksen,Josquin Errard,Thomas Essinger-Hileman,Fabio Finelli,Raphael Flauger,Cristian Franceschet,U. Fuskeland,K. Ganga,Jiansong Gao,Ricardo Génova-Santos,T. Ghigna,Ana Gómez,Marcin Gradziel,J. Grain,Frank Grupp,A. Gruppuso,Jon E. Gudmundsson,N. W. Halverson,Peter Charles Hargrave,T. Hasebe,Masaya Hasegawa,Makoto Hattori,Masashi Hazumi,Sophie Henrot-Versille,D. Herranz,C. Hill,Gene C. Hilton,Y. Hirota,E. Hivon,Renée Hlozek,D. T. Hoang,J. Hubmayr,Kiyotomo Ichiki,Toshiaki Iida,H. Imada,Kosei Ishimura,Hirokazu Ishino,G. Jaehnig,M. Jones,T. Kaga,Shingo Kashima,Yousuke Kataoka,Nobuhiko Katayama,T. Kawasaki,R. Keskitalo,A. Kibayashi,T. Kikuchi,Kimihiro Kimura,Theodore Kisner,Yohei Kobayashi,Nozomu Kogiso,A. Kogut,K. Kohri,Eiichiro Komatsu,K. Komatsu,Kuniaki Konishi,N. Krachmalnicoff,C. L. Kuo,Noah Kurinsky,A. Kushino,Makoto Kuwata-Gonokami,Luca Lamagna,Massimiliano Lattanzi,Adrian T. Lee,Eric V. Linder,Bruno Maffei,Davide Maino,M. Maki,Anna Mangilli,Enrique Martinez-Gonzalez,Silvia Masi,R. Mathon,Tomotake Matsumura,A. Mennella,M. Migliaccio,Yuto Minami,K. Mistuda,D. Molinari,L. Montier,Gianluca Morgante,B. Mot,Yasuhiro Murata,J. A. Murphy,Masaaki Nagai,R. Nagata,Shogo Nakamura,T. Namikawa,P. Natoli,S. Nerva,Toshiyuki Nishibori,H. Nishino,Yasunori Nomura,F. Noviello,Créidhe O'Sullivan,H. Ochi,Hideo Ogawa,Hiroyuki Ohsaki,Izumi S. Ohta,Norio Okada,L. Pagano,Alessandro Paiella,D. Paoletti,G. Patanchon,F. Piacentini,Giampaolo Pisano,G. Polenta,D. Poletti,T. Prouvé,Giuseppe Puglisi,Damien Rambaud,Christopher Raum,S. Realini,Mathieu Remazeilles,G. Roudil,Jose Alberto Rubino-Martin,M. Russell,Haruyuki Sakurai,Yuki Sakurai,M. Sandri,Giorgio Savini,Douglas Scott,Yutaro Sekimoto,Blake D. Sherwin,Keisuke Shinozaki,Maresuke Shiraishi,Peter Shirron,G. Signorelli,Graeme Smecher,P. Spizzi,S. L. Stever,R. Stompor,S. Sugiyama,A. Suzuki,Jun-ichi Suzuki,Eric R. Switzer,Ryota Takaku,H. Takakura,S. Takakura,Yasuhiro Takeda,Angela C. Taylor,E. Taylor,Yasunori Terao,K. L. Thompson,B. Thorne,M. Tomasi,H. Tomida,Neil Trappe,M. Tristram,M. Tsuji,Masahiro Tsujimoto,Carole Tucker,J. N. Ullom,S. Uozumi,Shin Utsunomiya,J. Van Lanen,Gerard Vermeulen,P. Vielva,F. Villa,Michael R. Vissers,Nicola Vittorio,F. Voisin,Ian J. Walker,N. Watanabe,Ingunn Kathrine Wehus,Jochen Weller,Benjamin Westbrook,Benedict Tobias Winter,Edward J. Wollack,Ryo Yamamoto,Noriko Y. Yamasaki,Masato Yanagisawa,T. Yoshida,Junji Yumoto,Mario Zannoni,A. Zonca +218 more
TL;DR: LiteBIRD as discussed by the authors is a large-scale transition-edge sensors (TES) mission with a total wide frequency coverage between 34GHz and 448GHz, targeting its launch in Japanese Fiscal Year 2027 (2027FY) with JAXA's H3 rocket, which will accommodate more than 4000 TESs in focal planes of reflective low-frequency and refractive medium-and high-frequency telescopes.
Planck early results. XXI. Properties of the interstellar mediumin the Galactic plane
A. Abergel,P. A. R. Ade,Nabila Aghanim,M. Arnaud,M. Ashdown,Jonathan Aumont,C. Baccigalupi,Amedeo Balbi,A. J. Banday,R. B. Barreiro,J. G. Bartlett,E. Battaner,K. Benabed,Aurélien Benoit,J.-P. Bernard,M. Bersanelli,R. S. Bhatia,J. J. Bock,Anna Bonaldi,J. R. Bond,J. Borrill,F. R. Bouchet,F. Boulanger,M. Bucher,Carlo Burigana,P. Cabella,J.-F. Cardoso,A. Catalano,L. Cayón,Anthony Challinor,A. Chamballu,Lung-Yih Chiang,C. Chiang,P. R. Christensen,Stéphane Colombi,F. Couchot,A. Coulais,B. P. Crill,F. Cuttaia,Thomas M. Dame,L. Danese,R. D. Davies,R. J. Davis,P. de Bernardis,G. de Gasperis,A. De Rosa,G. de Zotti,J. Delabrouille,J.-M. Delouis,F.-X. Désert,Clive Dickinson,S. Donzelli,O. Doré,U. Dörl,M. Douspis,X. Dupac,George Efstathiou,Torsten A. Enßlin,Fabio Finelli,Olivier Forni,M. Frailis,E. Franceschi,S. Galeotta,K. Ganga,M. Giard,Giovanna Giardino,Y. Giraud-Héraud,J. González-Nuevo,K. M. Górski,Steven Gratton,A. Gregorio,I. A. Grenier,A. Grupposo,F. K. Hansen,D. L. Harrison,Sophie Henrot-Versille,D. Herranz,S.R. Hilderbrandt,E. Hivon,Michael P. Hobson,W. A. Holmes,W. Hovest,Roger J. Hoyland,Kevin M. Huffenberger,Andrew H. Jaffe,T. R. Jaffe,W. C. Jones,Mika Juvela,E. Keihänen,R. Keskitalo,Theodore Kisner,R. Kneissl,Lloyd Knox,Hannu Kurki-Suonio,G. Lagache,Anne Lähteenmäki,J.-M. Lamarre,Anthony Lasenby,R. J. Laureijs,Charles R. Lawrence,S. Leach,R. Leonardi,Claude Leroy,P. B. Lilje,M. Linden-Vørnle,M. López-Caniego,Philip Lubin,J. F. Macías-Pérez,C. J. MacTavish,Bruno Maffei,Nazzareno Mandolesi,Robert G. Mann,Michele Maris,D. J. Marshall,E. Martínez-González,Serena Masi,S. Matarrese,F. Matthai,Pasquale Mazzotta,Peregrine McGehee,Peter Meinhold,Alessandro Melchiorri,L. Mendes,A. Mennella,Marc-Antoine Miville-Deschenes,A. Moneti,L. Montier,Gianluca Morgante,Daniel J. Mortlock,Dipak Munshi,J.Anthony Murphy,Pavel D. Naselsky,P. Natoli,Calvin B. Netterfield,Hans Ulrik Nørgaard-Nielsen,F. Noviello,Dmitry Novikov,I. D. Novikov,S. Osborne,F. Pajot,R. Paladini,Fabio Pasian,G. Patanchon,O. Perdereau,L. Perotto,L. Perotta,F. Piacentini,M. Piat,Stéphane Plaszczynski,E. Pointecouteau,G. Polenta,N. Ponthieu,T. Poutanen,G. Prézeau,Simon Prunet,J.-L. Puget,Jörg P. Rachen,William T. Reach,Rafael Rebolo,W. Reich,C. Renault,S. Ricciardi,T. Riller,I. Ristorcelli,G. Rocha,C. Rosset,Jose Alberto Rubino-Martin,B. Rusholme,M. Sandri,D. Santos,Giorgio Savini,Douglas Scott,Seiffert,P. Shellard,G. F. Smoot,Jean-Luc Starck,F. Stivoli,V. Stolyarov,R. Stompor,R. V. Sudiwala,J.-F. Sygnet,J. A. Tauber,Luca Terenzi,L. Toffolatti,M. Tomasi,J.-P. Torre,M. Tristram,Jussi Tuovinen,G. Umana,Luca Valenziano,Jussi Varis,P. Vielva,F. Villa,Nicola Vittorio,Lawrence A. Wade,B. D. Wandelt,Althea Wilkinson,Nathalie Ysard,D. Yvon,A. Zacchei,A. Zonca +200 more
- 01 Jan 2011
Abstract: Planck has observed the entire sky from 30 GHz to 857 GHz. The observed foreground emission contains contributions from different phases
of the interstellar medium (ISM). We have separated the observed Galactic emission into the different gaseous components (atomic, molecular
and ionised) in each of a number of Galactocentric rings. This technique provides the necessary information to study dust properties (emissivity,
temperature, etc.), as well as other emission mechanisms as a function of Galactic radius. Templates are created for various Galactocentric radii
using velocity information from atomic (neutral hydrogen) and molecular (12CO) observations. The ionised template is assumed to be traced by
free-free emission as observed by WMAP, while 408 MHz emission is used to trace the synchrotron component. Gas emission not traced by the
above templates, namely “dark gas”, as evidenced using Planck data, is included as an additional template, the first time such a component has
been used in this way. These templates are then correlated with each of the Planck frequency bands, as well as with higher frequency data from
IRAS and DIRBE along with radio data at 1.4 GHz. The emission per column density of the gas templates allows us to create distinct spectral
energy distributions (SEDs) per Galactocentric ring and in each of the gaseous tracers from 1.4 GHz to 25 THz (12 μm). The resulting SEDs
allow us to explore the contribution of various emission mechanisms to the Planck signal. Apart from the thermal dust and free-free emission, we
have probed the Galaxy for anomalous (e.g., spinning) dust as well as synchrotron emission. We find the dust opacity in the solar neighbourhood,
τ/NH = 0.92±0.05×10−25 cm2 at 250 μm, with no significant variation with Galactic radius, even though the dust temperature is seen to vary from
over 25 K to under 14 K. Furthermore, we show that anomalous dust emission is present in the atomic, molecular and dark gas phases throughout
the Galactic disk. Anomalous emission is not clearly detected in the ionised phase, as free-free emission is seen to dominate. The derived dust
propeties associated with the dark gas phase are derived but do not allow us to reveal the nature of this phase. For all environments, the anomalous
emission is consistent with rotation from polycyclic aromatic hydrocarbons (PAHs) and, according to our simple model, accounts for (25 ± 5)%
(statistical) of the total emission at 30 GHz.
87
Planck intermediate results - III. The relation between galaxy cluster mass and Sunyaev-Zeldovich signal
Peter A. R. Ade,Nabila Aghanim,Monique Arnaud,M. Ashdown,F. Atrio-Barandela,J. Aumont,Carlo Baccigalupi,Amedeo Balbi,A. J. Banday,A. J. Banday,R. B. Barreiro,James G. Bartlett,James G. Bartlett,E. Battaner,Richard A. Battye,Karim Benabed,J.-P. Bernard,Marco Bersanelli,Marco Bersanelli,R. S. Bhatia,I. F. Bikmaev,I. F. Bikmaev,Hans Böhringer,A. Bonaldi,John Bond,Stefano Borgani,Stefano Borgani,Julian Borrill,Julian Borrill,François R. Bouchet,Hervé Bourdin,Michael L. Brown,Martin Bucher,R. A. Burenin,Carlo Burigana,Carlo Burigana,R. C. Butler,Paolo Cabella,J.-F. Cardoso,J.-F. Cardoso,J.-F. Cardoso,P. Carvalho,A. Chamballu,Lung-Yih Chiang,Gayoung Chon,David L. Clements,Sergio Colafrancesco,A. Coulais,F. Cuttaia,A. Da Silva,Håkon Dahle,R. J. Davis,P. de Bernardis,G. de Gasperis,Jacques Delabrouille,J. Démoclès,F.-X. Désert,Jose M. Diego,Klaus Dolag,Herve Dole,Herve Dole,S. Donzelli,O. Doré,Marian Douspis,X. Dupac,George Efstathiou,Torsten A. Enßlin,H. K. Eriksen,Fabio Finelli,I. Flores-Cacho,I. Flores-Cacho,Olivier Forni,Olivier Forni,M. Frailis,E. Franceschi,M. Frommert,S. Galeotta,Ken Ganga,Ricardo Genova-Santos,M. Giard,M. Giard,Y. Giraud-Héraud,J. González-Nuevo,J. González-Nuevo,Krzysztof M. Gorski,Krzysztof M. Gorski,Anna Gregorio,Anna Gregorio,Alessandro Gruppuso,F. K. Hansen,Debbie Harrison,C. Hernández-Monteagudo,Diego Herranz,Sergi R. Hildebrandt,Eric Hivon,Michael P. Hobson,W. Holmes,Kevin M. Huffenberger,G. Hurier,T. Jagemann,Mika Juvela,E. Keihänen,Irek Khamitov,R. Kneissl,R. Kneissl,J. Knoche,Martin Kunz,Martin Kunz,Hannu Kurki-Suonio,Hannu Kurki-Suonio,Guilaine Lagache,J.-M. Lamarre,Anthony Lasenby,Charles R. Lawrence,M. Le Jeune,S. Leach,R. Leonardi,Andrew R. Liddle,P. B. Lilje,M. Linden-Vørnle,M. López-Caniego,Gemma Luzzi,J. F. Macías-Pérez,Davide Maino,Davide Maino,N. Mandolesi,N. Mandolesi,M. Maris,Francine R. Marleau,D. J. Marshall,D. J. Marshall,Enrique Martínez-González,Silvia Masi,Sabino Matarrese,F. Matthai,Pasquale Mazzotta,Peter Meinhold,Alessandro Melchiorri,Jean-Baptiste Melin,L. Mendes,Subhasish Mitra,Subhasish Mitra,Marc-Antoine Miville-Deschênes,Marc-Antoine Miville-Deschênes,L. A. Montier,L. A. Montier,Gianluca Morgante,Dipak Munshi,Paolo Natoli,Paolo Natoli,Paolo Natoli,Hans Ulrik Nørgaard-Nielsen,F. Noviello,S. Osborne,F. Pajot,Daniela Paoletti,B. Partridge,T. J. Pearson,O. Perdereau,Francesca Perrotta,F. Piacentini,M. Piat,Elena Pierpaoli,R. Piffaretti,R. Piffaretti,P. Platania,Etienne Pointecouteau,Etienne Pointecouteau,G. Polenta,G. Polenta,Nicolas Ponthieu,Nicolas Ponthieu,L. Popa,T. Poutanen,T. Poutanen,T. Poutanen,G. W. Pratt,Simon Prunet,Jean-Loup Puget,Jörg P. Rachen,Rafael Rebolo,Rafael Rebolo,M. Reinecke,Mathieu Remazeilles,Mathieu Remazeilles,C. Renault,S. Ricciardi,I. Ristorcelli,I. Ristorcelli,Graca Rocha,C. Rosset,Mariachiara Rossetti,Mariachiara Rossetti,Jose Alberto Rubino-Martin,Jose Alberto Rubino-Martin,Ben Rusholme,M. Sandri,Giorgio Savini,Douglas Scott,Jean-Luc Starck,F. Stivoli,V. Stolyarov,V. Stolyarov,Rashmikant V. Sudiwala,Rashid Sunyaev,D. Sutton,A.-S. Suur-Uski,A.-S. Suur-Uski,J.-F. Sygnet,J. A. Tauber,Luca Terenzi,Luisa Toffolatti,Luisa Toffolatti,M. Tomasi,Matthieu Tristram,Luca Valenziano,B. Van Tent,P. Vielva,Fabrizio Villa,Nicola Vittorio,Benjamin D. Wandelt,Benjamin D. Wandelt,Jochen Weller,Simon D. M. White,D. Yvon,Andrea Zacchei,Andrea Zonca +226 more
TL;DR: In this article, the relation between the galaxy cluster mass M and Sunyaev-Zeldovich (SZ) effect signal {DA2} Y500 for a sample of 19 objects for which weak lensing (WL) mass measurements obtained from Subaru Telescope data are available in the literature.