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Fermi LAT Search for Photon Lines from 30 to 200 GeV and Dark Matter Implications

Dark matter (DM) particle annihilation or decay can produce monochromatic \(\gamma\)-rays readily distinguishable from astrophysical sources. \(\gamma\)-ray line limits from 30 GeV to 200 GeV obtained from 11 months of Fermi Large Area Space Telescope data from 20-300 GeV are presented using a selec...

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Published in:arXiv.org 2010-01
Main Authors: Abdo, A A, Ackermann, M, Baldini, L, Bastieri, D, Bonamente, E, Brez, A, Bruel, P, Burnett, T H, Caliandro, G A, Cameron, R A, Caraveo, P A, Carrigan, S, Casandjian, J M, Elik, O C, Claus, R, Cohen-Tanugi, J, Dermer, C D, Edmonds, Y, Essig, R, Farnier, C, Frailis, M, Fukazawa, Y, Funk, S, Fusco, P, Gehrels, N, Giglietto, N, Giordano, F, Glanzman, T, Grenier, I A, Grove, J E, Guillemot, L, Guiriec, S, Gustafsson, M, Hadasch, D, Horan, D, Johnson, A S, Johnson, W N, Katagiri, H, Kataoka, J, Kerr, M, dlseder, J Kno, Kuss, M, Lande, J, Latronico, L, Loparco, F, Lovellette, M N, Lubrano, P, Makeev, A, Mazziotta, M N, McEnery, J E, Meurer, C, Michelson, P F, Mitthumsiri, W, Mizuno, T, Moiseev, A A, Monte, C, Morselli, A, Nolan, P L, Norris, J P, Orlando, E, Ormes, J F, Ozaki, M, Paneque, D, Panetta, J H, Parent, D, Pelassa, V, Pesce-Rollins, M, Piron, F, Rainó, S, Razzano, M, Reimer, O, Ripken, J, Ritz, S, Sadrozinski, H F -W, Sander, A, Saz Parkinson, P M, Scargle, J D, Schalk, T L, Sellerholm, A, Sgró, C, Siskind, E J, Smith, D A, Smith, P D, Spandre, G, Spinelli, P, J -L Starck, Strickman, M S, Suson, D J, Takahashi, H, Tanaka, T, Thayer, J G, Tibaldo, L, Torres, D F, Uchiyama, Y, Vasileiou, V, Vilchez, N, Wang, P, Wood, K S, Ylinen, T, Ziegler, M
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creator Abdo, A A
Ackermann, M
Baldini, L
Bastieri, D
Bonamente, E
Brez, A
Bruel, P
Burnett, T H
Caliandro, G A
Cameron, R A
Caraveo, P A
Carrigan, S
Casandjian, J M
Elik, O C
Claus, R
Cohen-Tanugi, J
Dermer, C D
Edmonds, Y
Essig, R
Farnier, C
Frailis, M
Fukazawa, Y
Funk, S
Fusco, P
Gehrels, N
Giglietto, N
Giordano, F
Glanzman, T
Grenier, I A
Grove, J E
Guillemot, L
Guiriec, S
Gustafsson, M
Hadasch, D
Horan, D
Johnson, A S
Johnson, W N
Katagiri, H
Kataoka, J
Kerr, M
dlseder, J Kno
Kuss, M
Lande, J
Latronico, L
Loparco, F
Lovellette, M N
Lubrano, P
Makeev, A
Mazziotta, M N
McEnery, J E
Meurer, C
Michelson, P F
Mitthumsiri, W
Mizuno, T
Moiseev, A A
Monte, C
Morselli, A
Nolan, P L
Norris, J P
Orlando, E
Ormes, J F
Ozaki, M
Paneque, D
Panetta, J H
Parent, D
Pelassa, V
Pesce-Rollins, M
Piron, F
Rainó, S
Razzano, M
Reimer, O
Ripken, J
Ritz, S
Sadrozinski, H F -W
Sander, A
Saz Parkinson, P M
Scargle, J D
Schalk, T L
Sellerholm, A
Sgró, C
Siskind, E J
Smith, D A
Smith, P D
Spandre, G
Spinelli, P
J -L Starck
Strickman, M S
Suson, D J
Takahashi, H
Tanaka, T
Thayer, J G
Tibaldo, L
Torres, D F
Uchiyama, Y
Vasileiou, V
Vilchez, N
Wang, P
Wood, K S
Ylinen, T
Ziegler, M
description Dark matter (DM) particle annihilation or decay can produce monochromatic \(\gamma\)-rays readily distinguishable from astrophysical sources. \(\gamma\)-ray line limits from 30 GeV to 200 GeV obtained from 11 months of Fermi Large Area Space Telescope data from 20-300 GeV are presented using a selection based on requirements for a \(\gamma\)-ray line analysis, and integrated over most of the sky. We obtain \(\gamma\)-ray line flux upper limits in the range \(0.6-4.5\times 10^{-9}\mathrm{cm}^{-2}\mathrm{s}^{-1}\), and give corresponding DM annihilation cross-section and decay lifetime limits. Theoretical implications are briefly discussed.
doi_str_mv 10.48550/arxiv.1001.4836
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Hadasch, D ; Horan, D ; Johnson, A S ; Johnson, W N ; Katagiri, H ; Kataoka, J ; Kerr, M ; dlseder, J Kno ; Kuss, M ; Lande, J ; Latronico, L ; Loparco, F ; Lovellette, M N ; Lubrano, P ; Makeev, A ; Mazziotta, M N ; McEnery, J E ; Meurer, C ; Michelson, P F ; Mitthumsiri, W ; Mizuno, T ; Moiseev, A A ; Monte, C ; Morselli, A ; Nolan, P L ; Norris, J P ; Orlando, E ; Ormes, J F ; Ozaki, M ; Paneque, D ; Panetta, J H ; Parent, D ; Pelassa, V ; Pesce-Rollins, M ; Piron, F ; Rainó, S ; Razzano, M ; Reimer, O ; Ripken, J ; Ritz, S ; Sadrozinski, H F -W ; Sander, A ; Saz Parkinson, P M ; Scargle, J D ; Schalk, T L ; Sellerholm, A ; Sgró, C ; Siskind, E J ; Smith, D A ; Smith, P D ; Spandre, G ; Spinelli, P ; J -L Starck ; Strickman, M S ; Suson, D J ; Takahashi, H ; Tanaka, T ; Thayer, J G ; Tibaldo, L ; Torres, D F ; Uchiyama, Y ; Vasileiou, V ; Vilchez, N ; Wang, P ; Wood, K S ; Ylinen, T ; Ziegler, 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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>ProQuest - 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><jtitle>arXiv.org</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Abdo, A A</au><au>Ackermann, M</au><au>Baldini, L</au><au>Bastieri, D</au><au>Bonamente, E</au><au>Brez, A</au><au>Bruel, P</au><au>Burnett, T H</au><au>Caliandro, G A</au><au>Cameron, R A</au><au>Caraveo, P A</au><au>Carrigan, S</au><au>Casandjian, J M</au><au>Elik, O C</au><au>Claus, R</au><au>Cohen-Tanugi, J</au><au>Dermer, C D</au><au>Edmonds, Y</au><au>Essig, R</au><au>Farnier, C</au><au>Frailis, M</au><au>Fukazawa, Y</au><au>Funk, S</au><au>Fusco, P</au><au>Gehrels, N</au><au>Giglietto, N</au><au>Giordano, F</au><au>Glanzman, T</au><au>Grenier, I A</au><au>Grove, J E</au><au>Guillemot, L</au><au>Guiriec, S</au><au>Gustafsson, M</au><au>Hadasch, D</au><au>Horan, D</au><au>Johnson, A S</au><au>Johnson, W N</au><au>Katagiri, H</au><au>Kataoka, J</au><au>Kerr, M</au><au>dlseder, J Kno</au><au>Kuss, M</au><au>Lande, J</au><au>Latronico, L</au><au>Loparco, F</au><au>Lovellette, M N</au><au>Lubrano, P</au><au>Makeev, A</au><au>Mazziotta, M N</au><au>McEnery, J E</au><au>Meurer, C</au><au>Michelson, P F</au><au>Mitthumsiri, W</au><au>Mizuno, T</au><au>Moiseev, A A</au><au>Monte, C</au><au>Morselli, A</au><au>Nolan, P L</au><au>Norris, J P</au><au>Orlando, E</au><au>Ormes, J F</au><au>Ozaki, M</au><au>Paneque, D</au><au>Panetta, J H</au><au>Parent, D</au><au>Pelassa, V</au><au>Pesce-Rollins, M</au><au>Piron, F</au><au>Rainó, S</au><au>Razzano, M</au><au>Reimer, O</au><au>Ripken, J</au><au>Ritz, S</au><au>Sadrozinski, H F -W</au><au>Sander, A</au><au>Saz Parkinson, P M</au><au>Scargle, J D</au><au>Schalk, T L</au><au>Sellerholm, A</au><au>Sgró, C</au><au>Siskind, E J</au><au>Smith, D A</au><au>Smith, P D</au><au>Spandre, G</au><au>Spinelli, P</au><au>J -L Starck</au><au>Strickman, M S</au><au>Suson, D J</au><au>Takahashi, H</au><au>Tanaka, T</au><au>Thayer, J G</au><au>Tibaldo, L</au><au>Torres, D F</au><au>Uchiyama, Y</au><au>Vasileiou, V</au><au>Vilchez, N</au><au>Wang, P</au><au>Wood, K S</au><au>Ylinen, T</au><au>Ziegler, M</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Fermi LAT Search for Photon Lines from 30 to 200 GeV and Dark Matter Implications</atitle><jtitle>arXiv.org</jtitle><date>2010-01-27</date><risdate>2010</risdate><eissn>2331-8422</eissn><abstract>Dark matter (DM) particle annihilation or decay can produce monochromatic \(\gamma\)-rays readily distinguishable from astrophysical sources. \(\gamma\)-ray line limits from 30 GeV to 200 GeV obtained from 11 months of Fermi Large Area Space Telescope data from 20-300 GeV are presented using a selection based on requirements for a \(\gamma\)-ray line analysis, and integrated over most of the sky. We obtain \(\gamma\)-ray line flux upper limits in the range \(0.6-4.5\times 10^{-9}\mathrm{cm}^{-2}\mathrm{s}^{-1}\), and give corresponding DM annihilation cross-section and decay lifetime limits. Theoretical implications are briefly discussed.</abstract><cop>Ithaca</cop><pub>Cornell University Library, arXiv.org</pub><doi>10.48550/arxiv.1001.4836</doi><oa>free_for_read</oa></addata></record>
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subjects Dark matter
Particle decay
Space telescopes
title Fermi LAT Search for Photon Lines from 30 to 200 GeV and Dark Matter Implications
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