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Planck 2013 results X. Energetic particle effects: characterization, removal, and simulation

This paper presents the detection, interpretation and removal of the signal resulting from interactions of high energy particles with the Planck High Frequency Instrument (HFI). These interactions fall into two categories, heating the 0.1 K bolometer plate and glitches in each detector time stream....

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Detalles Bibliográficos
Autores principales: Ade, P.A.R., Aghanim, N., Armitage-Caplan, C., Arnaud, M., Ashdown, M., Atrio-Barandela, F., Aumont, J., Baccigalupi, C., Banday, A.J., Barreiro, R.B., Battaner, E., Benabed, K., Benoît, A., Benoit-Lévy, A., Bernard, J. -P., Bersanelli, M., Bielewicz, P., Bobin, J., Bock, J.J., Bond, J.R., Borrill, J., Bouchet, F.R., Bridges, M., Bucher, M., Burigana, C., Cardoso, J. -F., Catalano, A., Challinor, A., Chamballu, A., Chiang, L. -Y, Chiang, H.C., Christensen, P.R., Church, S., Clements, D.L., Colombi, S., Colombo, L.P.L., Couchot, F., Coulais, A., Crill, B.P., Curto, A., Cuttaia, F., Danese, L., Davies, R.D., de Bernardis, P., de Rosa, A., de Zotti, G., Delabrouille, J., Delouis, J. -M., Désert, F. -X., Diego, J.M., Dole, H., Donzelli, S., Doré, O., Douspis, M., Dupac, X., Efstathiou, G., Enßlin, T.A., Eriksen, H.K., Finelli, F., Forni, O., Frailis, M., Franceschi, E., Galeotta, S., Ganga, K., Giard, M., Girard, D., Giraud-Héraud, Y., González-Nuevo, J., Górski, K.M., Gratton, S., Gregorio, A., Gruppuso, A., Hansen, F.K., Hanson, D., Harrison, D., Henrot-Versillé, S., Hernández-Monteagudo, C., Herranz, D., Hildebrandt, S.R., Hivon, E., Hobson, M., Holmes, W.A., Hornstrup, A., Hovest, W., Huffenberger, K.M., Jaffe, T.R., Jaffe, A.H., Jones, W.C., Juvela, M., Keihänen, E., Keskitalo, R., Kisner, T.S., Kneissl, R., Knoche, J., Knox, L., Kunz, M., Kurki-Suonio, H., Lagache, G., Lamarre, J. -M., Lasenby, A., Laureijs, R.J., Lawrence, C.R., Leonardi, R., Leroy, C., Lesgourgues, J., Liguori, M., Lilje, P.B., Linden-Vørnle, M., López-Caniego, M., Lubin, P.M., Macías-Pérez, J.F., Mandolesi, N., Maris, M., Marshall, D.J., Martin, P.G., Martínez-González, E., Masi, S., Matarrese, S., Matthai, F., Mazzotta, P., McGehee, P., Melchiorri, A., Mendes, L., Mennella, A., Migliaccio, M., Miniussi, A., Mitra, S., Miville-Deschênes, M. -A., Moneti, A., Montier, L., Morgante, G., Mortlock, D., Mottet, S., Munshi, D., Murphy, J.A., Naselsky, P., Nati, F., Natoli, P., Netterfield, C.B., Nørgaard-Nielsen, H.U., Noviello, F., Novikov, D., Novikov, I., Osborne, S., Oxborrow, C.A., Paci, F., Pagano, L., Pajot, F., Paoletti, D., Pasian, F., Patanchon, G., Perdereau, O., Perotto, L., Perrotta, F., Piacentini, F., Piat, M., Pierpaoli, E., Pietrobon, D., Plaszczynski, S., Pointecouteau, E., Polenta, G., Ponthieu, N., Popa, L., Poutanen, T., Pratt, G.W., Prézeau, G., Prunet, S., Puget, J. -L., Rachen, J.P., Racine, B., Reinecke, M., Remazeilles, M., Renault, C., Ricciardi, S., Riller, T., Ristorcelli, I., Rocha, G., Rosset, C., Roudier, G., Rusholme, B., Sanselme, L., Santos, D., Sauvé, A., Savini, G., Shellard, E.P.S., Spencer, L.D., Starck, J. -L., Stolyarov, V., Stompor, R., Sudiwala, R., Sureau, F., Sutton, D., Suur-Uski, A. -S., Sygnet, J. -F., Tauber, J.A., Tavagnacco, D., Terenzi, L., Toffolatti, L., Tomasi, M., Tristram, M., Tucci, M., Umana, G., Valenziano, L., Valiviita, J., Van Tent, B., Vielva, P., Villa, F., Vittorio, N., Wade, L.A., Wandelt, B.D., Yvon, D., Zacchei, A., Zonca, A.
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1051/0004-6361/201321577
http://cds.cern.ch/record/1530681
_version_ 1780929581186809856
author Ade, P.A.R.
Aghanim, N.
Armitage-Caplan, C.
Arnaud, M.
Ashdown, M.
Atrio-Barandela, F.
Aumont, J.
Baccigalupi, C.
Banday, A.J.
Barreiro, R.B.
Battaner, E.
Benabed, K.
Benoît, A.
Benoit-Lévy, A.
Bernard, J. -P.
Bersanelli, M.
Bielewicz, P.
Bobin, J.
Bock, J.J.
Bond, J.R.
Borrill, J.
Bouchet, F.R.
Bridges, M.
Bucher, M.
Burigana, C.
Cardoso, J. -F.
Catalano, A.
Challinor, A.
Chamballu, A.
Chiang, L. -Y
Chiang, H.C.
Christensen, P.R.
Church, S.
Clements, D.L.
Colombi, S.
Colombo, L.P.L.
Couchot, F.
Coulais, A.
Crill, B.P.
Curto, A.
Cuttaia, F.
Danese, L.
Davies, R.D.
de Bernardis, P.
de Rosa, A.
de Zotti, G.
Delabrouille, J.
Delouis, J. -M.
Désert, F. -X.
Diego, J.M.
Dole, H.
Donzelli, S.
Doré, O.
Douspis, M.
Dupac, X.
Efstathiou, G.
Enßlin, T.A.
Eriksen, H.K.
Finelli, F.
Forni, O.
Frailis, M.
Franceschi, E.
Galeotta, S.
Ganga, K.
Giard, M.
Girard, D.
Giraud-Héraud, Y.
González-Nuevo, J.
Górski, K.M.
Gratton, S.
Gregorio, A.
Gruppuso, A.
Hansen, F.K.
Hanson, D.
Harrison, D.
Henrot-Versillé, S.
Hernández-Monteagudo, C.
Herranz, D.
Hildebrandt, S.R.
Hivon, E.
Hobson, M.
Holmes, W.A.
Hornstrup, A.
Hovest, W.
Huffenberger, K.M.
Jaffe, T.R.
Jaffe, A.H.
Jones, W.C.
Juvela, M.
Keihänen, E.
Keskitalo, R.
Kisner, T.S.
Kneissl, R.
Knoche, J.
Knox, L.
Kunz, M.
Kurki-Suonio, H.
Lagache, G.
Lamarre, J. -M.
Lasenby, A.
Laureijs, R.J.
Lawrence, C.R.
Leonardi, R.
Leroy, C.
Lesgourgues, J.
Liguori, M.
Lilje, P.B.
Linden-Vørnle, M.
López-Caniego, M.
Lubin, P.M.
Macías-Pérez, J.F.
Mandolesi, N.
Maris, M.
Marshall, D.J.
Martin, P.G.
Martínez-González, E.
Masi, S.
Matarrese, S.
Matthai, F.
Mazzotta, P.
McGehee, P.
Melchiorri, A.
Mendes, L.
Mennella, A.
Migliaccio, M.
Miniussi, A.
Mitra, S.
Miville-Deschênes, M. -A.
Moneti, A.
Montier, L.
Morgante, G.
Mortlock, D.
Mottet, S.
Munshi, D.
Murphy, J.A.
Naselsky, P.
Nati, F.
Natoli, P.
Netterfield, C.B.
Nørgaard-Nielsen, H.U.
Noviello, F.
Novikov, D.
Novikov, I.
Osborne, S.
Oxborrow, C.A.
Paci, F.
Pagano, L.
Pajot, F.
Paoletti, D.
Pasian, F.
Patanchon, G.
Perdereau, O.
Perotto, L.
Perrotta, F.
Piacentini, F.
Piat, M.
Pierpaoli, E.
Pietrobon, D.
Plaszczynski, S.
Pointecouteau, E.
Polenta, G.
Ponthieu, N.
Popa, L.
Poutanen, T.
Pratt, G.W.
Prézeau, G.
Prunet, S.
Puget, J. -L.
Rachen, J.P.
Racine, B.
Reinecke, M.
Remazeilles, M.
Renault, C.
Ricciardi, S.
Riller, T.
Ristorcelli, I.
Rocha, G.
Rosset, C.
Roudier, G.
Rusholme, B.
Sanselme, L.
Santos, D.
Sauvé, A.
Savini, G.
Shellard, E.P.S.
Spencer, L.D.
Starck, J. -L.
Stolyarov, V.
Stompor, R.
Sudiwala, R.
Sureau, F.
Sutton, D.
Suur-Uski, A. -S.
Sygnet, J. -F.
Tauber, J.A.
Tavagnacco, D.
Terenzi, L.
Toffolatti, L.
Tomasi, M.
Tristram, M.
Tucci, M.
Umana, G.
Valenziano, L.
Valiviita, J.
Van Tent, B.
Vielva, P.
Villa, F.
Vittorio, N.
Wade, L.A.
Wandelt, B.D.
Yvon, D.
Zacchei, A.
Zonca, A.
author_facet Ade, P.A.R.
Aghanim, N.
Armitage-Caplan, C.
Arnaud, M.
Ashdown, M.
Atrio-Barandela, F.
Aumont, J.
Baccigalupi, C.
Banday, A.J.
Barreiro, R.B.
Battaner, E.
Benabed, K.
Benoît, A.
Benoit-Lévy, A.
Bernard, J. -P.
Bersanelli, M.
Bielewicz, P.
Bobin, J.
Bock, J.J.
Bond, J.R.
Borrill, J.
Bouchet, F.R.
Bridges, M.
Bucher, M.
Burigana, C.
Cardoso, J. -F.
Catalano, A.
Challinor, A.
Chamballu, A.
Chiang, L. -Y
Chiang, H.C.
Christensen, P.R.
Church, S.
Clements, D.L.
Colombi, S.
Colombo, L.P.L.
Couchot, F.
Coulais, A.
Crill, B.P.
Curto, A.
Cuttaia, F.
Danese, L.
Davies, R.D.
de Bernardis, P.
de Rosa, A.
de Zotti, G.
Delabrouille, J.
Delouis, J. -M.
Désert, F. -X.
Diego, J.M.
Dole, H.
Donzelli, S.
Doré, O.
Douspis, M.
Dupac, X.
Efstathiou, G.
Enßlin, T.A.
Eriksen, H.K.
Finelli, F.
Forni, O.
Frailis, M.
Franceschi, E.
Galeotta, S.
Ganga, K.
Giard, M.
Girard, D.
Giraud-Héraud, Y.
González-Nuevo, J.
Górski, K.M.
Gratton, S.
Gregorio, A.
Gruppuso, A.
Hansen, F.K.
Hanson, D.
Harrison, D.
Henrot-Versillé, S.
Hernández-Monteagudo, C.
Herranz, D.
Hildebrandt, S.R.
Hivon, E.
Hobson, M.
Holmes, W.A.
Hornstrup, A.
Hovest, W.
Huffenberger, K.M.
Jaffe, T.R.
Jaffe, A.H.
Jones, W.C.
Juvela, M.
Keihänen, E.
Keskitalo, R.
Kisner, T.S.
Kneissl, R.
Knoche, J.
Knox, L.
Kunz, M.
Kurki-Suonio, H.
Lagache, G.
Lamarre, J. -M.
Lasenby, A.
Laureijs, R.J.
Lawrence, C.R.
Leonardi, R.
Leroy, C.
Lesgourgues, J.
Liguori, M.
Lilje, P.B.
Linden-Vørnle, M.
López-Caniego, M.
Lubin, P.M.
Macías-Pérez, J.F.
Mandolesi, N.
Maris, M.
Marshall, D.J.
Martin, P.G.
Martínez-González, E.
Masi, S.
Matarrese, S.
Matthai, F.
Mazzotta, P.
McGehee, P.
Melchiorri, A.
Mendes, L.
Mennella, A.
Migliaccio, M.
Miniussi, A.
Mitra, S.
Miville-Deschênes, M. -A.
Moneti, A.
Montier, L.
Morgante, G.
Mortlock, D.
Mottet, S.
Munshi, D.
Murphy, J.A.
Naselsky, P.
Nati, F.
Natoli, P.
Netterfield, C.B.
Nørgaard-Nielsen, H.U.
Noviello, F.
Novikov, D.
Novikov, I.
Osborne, S.
Oxborrow, C.A.
Paci, F.
Pagano, L.
Pajot, F.
Paoletti, D.
Pasian, F.
Patanchon, G.
Perdereau, O.
Perotto, L.
Perrotta, F.
Piacentini, F.
Piat, M.
Pierpaoli, E.
Pietrobon, D.
Plaszczynski, S.
Pointecouteau, E.
Polenta, G.
Ponthieu, N.
Popa, L.
Poutanen, T.
Pratt, G.W.
Prézeau, G.
Prunet, S.
Puget, J. -L.
Rachen, J.P.
Racine, B.
Reinecke, M.
Remazeilles, M.
Renault, C.
Ricciardi, S.
Riller, T.
Ristorcelli, I.
Rocha, G.
Rosset, C.
Roudier, G.
Rusholme, B.
Sanselme, L.
Santos, D.
Sauvé, A.
Savini, G.
Shellard, E.P.S.
Spencer, L.D.
Starck, J. -L.
Stolyarov, V.
Stompor, R.
Sudiwala, R.
Sureau, F.
Sutton, D.
Suur-Uski, A. -S.
Sygnet, J. -F.
Tauber, J.A.
Tavagnacco, D.
Terenzi, L.
Toffolatti, L.
Tomasi, M.
Tristram, M.
Tucci, M.
Umana, G.
Valenziano, L.
Valiviita, J.
Van Tent, B.
Vielva, P.
Villa, F.
Vittorio, N.
Wade, L.A.
Wandelt, B.D.
Yvon, D.
Zacchei, A.
Zonca, A.
author_sort Ade, P.A.R.
collection CERN
description This paper presents the detection, interpretation and removal of the signal resulting from interactions of high energy particles with the Planck High Frequency Instrument (HFI). These interactions fall into two categories, heating the 0.1 K bolometer plate and glitches in each detector time stream. Glitch shapes are not simple single pole exponential decays and fall into a three families. The glitch shape for each family has been characterized empirically in flight data and removed from the detector time streams. The spectrum of the count rate/unit energy is computed for each family and a correspondence to where on the detector the particle hit is made. Most of the detected glitches are from galactic protons incident on the Si die frame supporting the micromachined bolometric detectors. At HFI, the particle flux is ~ 5 per square cm and per second and is dominated by protons incident on the spacecraft with an energy >39 MeV, leading to a rate of typically one event per second and per detector. Different categories of glitches have different signature in timestreams. Two of the glitch types have a low amplitude component that decays over nearly 1 second. This component produces an excess noise if not properly removed from the time ordered data. We have used a glitch detection and subtraction method based on the joint fit of population templates. The application of this novel glitch removal method removes excess noise from glitches. Using realistic simulations, we find this method does not introduce signal bias.
id cern-1530681
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-15306812023-08-09T03:11:57Zdoi:10.1051/0004-6361/201321577http://cds.cern.ch/record/1530681engAde, P.A.R.Aghanim, N.Armitage-Caplan, C.Arnaud, M.Ashdown, M.Atrio-Barandela, F.Aumont, J.Baccigalupi, C.Banday, A.J.Barreiro, R.B.Battaner, E.Benabed, K.Benoît, A.Benoit-Lévy, A.Bernard, J. -P.Bersanelli, M.Bielewicz, P.Bobin, J.Bock, J.J.Bond, J.R.Borrill, J.Bouchet, F.R.Bridges, M.Bucher, M.Burigana, C.Cardoso, J. -F.Catalano, A.Challinor, A.Chamballu, A.Chiang, L. -YChiang, H.C.Christensen, P.R.Church, S.Clements, D.L.Colombi, S.Colombo, L.P.L.Couchot, F.Coulais, A.Crill, B.P.Curto, A.Cuttaia, F.Danese, L.Davies, R.D.de Bernardis, P.de Rosa, A.de Zotti, G.Delabrouille, J.Delouis, J. -M.Désert, F. -X.Diego, J.M.Dole, H.Donzelli, S.Doré, O.Douspis, M.Dupac, X.Efstathiou, G.Enßlin, T.A.Eriksen, H.K.Finelli, F.Forni, O.Frailis, M.Franceschi, E.Galeotta, S.Ganga, K.Giard, M.Girard, D.Giraud-Héraud, Y.González-Nuevo, J.Górski, K.M.Gratton, S.Gregorio, A.Gruppuso, A.Hansen, F.K.Hanson, D.Harrison, D.Henrot-Versillé, S.Hernández-Monteagudo, C.Herranz, D.Hildebrandt, S.R.Hivon, E.Hobson, M.Holmes, W.A.Hornstrup, A.Hovest, W.Huffenberger, K.M.Jaffe, T.R.Jaffe, A.H.Jones, W.C.Juvela, M.Keihänen, E.Keskitalo, R.Kisner, T.S.Kneissl, R.Knoche, J.Knox, L.Kunz, M.Kurki-Suonio, H.Lagache, G.Lamarre, J. -M.Lasenby, A.Laureijs, R.J.Lawrence, C.R.Leonardi, R.Leroy, C.Lesgourgues, J.Liguori, M.Lilje, P.B.Linden-Vørnle, M.López-Caniego, M.Lubin, P.M.Macías-Pérez, J.F.Mandolesi, N.Maris, M.Marshall, D.J.Martin, P.G.Martínez-González, E.Masi, S.Matarrese, S.Matthai, F.Mazzotta, P.McGehee, P.Melchiorri, A.Mendes, L.Mennella, A.Migliaccio, M.Miniussi, A.Mitra, S.Miville-Deschênes, M. -A.Moneti, A.Montier, L.Morgante, G.Mortlock, D.Mottet, S.Munshi, D.Murphy, J.A.Naselsky, P.Nati, F.Natoli, P.Netterfield, C.B.Nørgaard-Nielsen, H.U.Noviello, F.Novikov, D.Novikov, I.Osborne, S.Oxborrow, C.A.Paci, F.Pagano, L.Pajot, F.Paoletti, D.Pasian, F.Patanchon, G.Perdereau, O.Perotto, L.Perrotta, F.Piacentini, F.Piat, M.Pierpaoli, E.Pietrobon, D.Plaszczynski, S.Pointecouteau, E.Polenta, G.Ponthieu, N.Popa, L.Poutanen, T.Pratt, G.W.Prézeau, G.Prunet, S.Puget, J. -L.Rachen, J.P.Racine, B.Reinecke, M.Remazeilles, M.Renault, C.Ricciardi, S.Riller, T.Ristorcelli, I.Rocha, G.Rosset, C.Roudier, G.Rusholme, B.Sanselme, L.Santos, D.Sauvé, A.Savini, G.Shellard, E.P.S.Spencer, L.D.Starck, J. -L.Stolyarov, V.Stompor, R.Sudiwala, R.Sureau, F.Sutton, D.Suur-Uski, A. -S.Sygnet, J. -F.Tauber, J.A.Tavagnacco, D.Terenzi, L.Toffolatti, L.Tomasi, M.Tristram, M.Tucci, M.Umana, G.Valenziano, L.Valiviita, J.Van Tent, B.Vielva, P.Villa, F.Vittorio, N.Wade, L.A.Wandelt, B.D.Yvon, D.Zacchei, A.Zonca, A.Planck 2013 results X. Energetic particle effects: characterization, removal, and simulationAstrophysics and AstronomyThis paper presents the detection, interpretation and removal of the signal resulting from interactions of high energy particles with the Planck High Frequency Instrument (HFI). These interactions fall into two categories, heating the 0.1 K bolometer plate and glitches in each detector time stream. Glitch shapes are not simple single pole exponential decays and fall into a three families. The glitch shape for each family has been characterized empirically in flight data and removed from the detector time streams. The spectrum of the count rate/unit energy is computed for each family and a correspondence to where on the detector the particle hit is made. Most of the detected glitches are from galactic protons incident on the Si die frame supporting the micromachined bolometric detectors. At HFI, the particle flux is ~ 5 per square cm and per second and is dominated by protons incident on the spacecraft with an energy >39 MeV, leading to a rate of typically one event per second and per detector. Different categories of glitches have different signature in timestreams. Two of the glitch types have a low amplitude component that decays over nearly 1 second. This component produces an excess noise if not properly removed from the time ordered data. We have used a glitch detection and subtraction method based on the joint fit of population templates. The application of this novel glitch removal method removes excess noise from glitches. Using realistic simulations, we find this method does not introduce signal bias.We describe the detection, interpretation, and removal of the signal resulting from interactions of high energy particles with the \Planck High Frequency Instrument (HFI). There are two types of interactions: heating of the 0.1 K bolometer plate; and glitches in each detector time stream. The transient responses to detector glitch shapes are not simple single-pole exponential decays and fall into three families. The glitch shape for each family has been characterized empirically in flight data and these shapes have been used to remove glitches from the detector time streams. The spectrum of the count rate per unit energy is computed for each family and a correspondence is made to the location on the detector of the particle hit. Most of the detected glitches are from Galactic protons incident on the die frame supporting the micro-machined bolometric detectors. In the \Planck orbit at L2, the particle flux is around $5\,{\rm cm}^{-2}\,{\rm s}^{-1}$ and is dominated by protons incident on the spacecraft with energy $>$39 MeV, at a rate of typically one event per second per detector. Different categories of glitches have different signatures in the time stream. Two of the glitch types have a low amplitude component that decays over nearly 1 s. This component produces excess noise if not properly removed from the time-ordered data. We have used a glitch detection and subtraction method based on the joint fit of population templates. The application of this novel glitch subtraction method removes excess noise from the time streams. Using realistic simulations, we find that this method does not introduce signal bias into the \Planck data.arXiv:1303.5071CERN-PH-TH-2013-124CERN-PH-TH-2013-124oai:cds.cern.ch:15306812013-03-22
spellingShingle Astrophysics and Astronomy
Ade, P.A.R.
Aghanim, N.
Armitage-Caplan, C.
Arnaud, M.
Ashdown, M.
Atrio-Barandela, F.
Aumont, J.
Baccigalupi, C.
Banday, A.J.
Barreiro, R.B.
Battaner, E.
Benabed, K.
Benoît, A.
Benoit-Lévy, A.
Bernard, J. -P.
Bersanelli, M.
Bielewicz, P.
Bobin, J.
Bock, J.J.
Bond, J.R.
Borrill, J.
Bouchet, F.R.
Bridges, M.
Bucher, M.
Burigana, C.
Cardoso, J. -F.
Catalano, A.
Challinor, A.
Chamballu, A.
Chiang, L. -Y
Chiang, H.C.
Christensen, P.R.
Church, S.
Clements, D.L.
Colombi, S.
Colombo, L.P.L.
Couchot, F.
Coulais, A.
Crill, B.P.
Curto, A.
Cuttaia, F.
Danese, L.
Davies, R.D.
de Bernardis, P.
de Rosa, A.
de Zotti, G.
Delabrouille, J.
Delouis, J. -M.
Désert, F. -X.
Diego, J.M.
Dole, H.
Donzelli, S.
Doré, O.
Douspis, M.
Dupac, X.
Efstathiou, G.
Enßlin, T.A.
Eriksen, H.K.
Finelli, F.
Forni, O.
Frailis, M.
Franceschi, E.
Galeotta, S.
Ganga, K.
Giard, M.
Girard, D.
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Hivon, E.
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Jaffe, T.R.
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Planck 2013 results X. Energetic particle effects: characterization, removal, and simulation
title Planck 2013 results X. Energetic particle effects: characterization, removal, and simulation
title_full Planck 2013 results X. Energetic particle effects: characterization, removal, and simulation
title_fullStr Planck 2013 results X. Energetic particle effects: characterization, removal, and simulation
title_full_unstemmed Planck 2013 results X. Energetic particle effects: characterization, removal, and simulation
title_short Planck 2013 results X. Energetic particle effects: characterization, removal, and simulation
title_sort planck 2013 results x. energetic particle effects: characterization, removal, and simulation
topic Astrophysics and Astronomy
url https://dx.doi.org/10.1051/0004-6361/201321577
http://cds.cern.ch/record/1530681
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