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Dark matter sees the light

Patrick Meadea,b, Michele Papuccia and Tomer Volanskya

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[1]
PAMELA collaboration, O. Adriani et al., 2009 An anomalous positron abundance in cosmic rays with energies 1.5-100 GeV, Nature 458 607 [0810.4995]
CrossRef  Preprint  PubMed  SPIRES 
[2]
PPB-BETS collaboration, S. Torii et al., High-energy electron observations by PPB-BETS flight in Antarctica, [0809.0760]
Preprint  SPIRES 
[3]
J. Chang et al., The electron spectrum above 20 GeV measured by ATIC-2, in Proceedings of the 29th International Cosmic Ray Conference (ICRC 2005), Tata Institute of Fundamental Research, Mumbai India 2005, volume 3, pg. 1

[4]
P.D. Serpico, 2009 On the possible causes of a rise with energy of the cosmic ray positron fraction, Phys. Rev. D 79 021302 [0810.4846]
CrossRef  Preprint  SPIRES 
 
D. Hooper, P. Blasi and P.D. Serpico, 2009 Pulsars as the sources of high energy cosmic ray positrons J. Cosmol. Astropart. Phys. JCAP01(2009)025 [0810.1527]
IOPscience  Preprint  SPIRES 
 
H. Yuksel, M.D. Kistler and T. Stanev, 2009 TeV gamma rays from Geminga and the origin of the GeV positron excess, Phys. Rev. Lett. 103 051101 [0810.2784]
CrossRef  Preprint  PubMed  SPIRES 
 
S. Profumo, Dissecting Pamela (and ATIC) with Occam's razor: existing, well-known pulsars naturally account for the 'anomalous' cosmic-ray electron and positron data, [0812.4457]
Preprint  SPIRES 
[5]
N. Arkani-Hamed, D.P. Finkbeiner, T.R. Slatyer and N. Weiner, 2009 A theory of dark matter, Phys. Rev. D 79 015014 [0810.0713]
CrossRef  Preprint  SPIRES 
[6]
Y. Nomura and J. Thaler, 2009 Dark matter through the axion portal, Phys. Rev. D 79 075008 [0810.5397]
CrossRef  Preprint  SPIRES 
 
R. Harnik and G.D. Kribs, 2009 An effective theory of Dirac dark matter, Phys. Rev. D 79 095007 [0810.5557]
CrossRef  Preprint  SPIRES 
 
P.J. Fox and E. Poppitz, 2009 Leptophilic dark matter, Phys. Rev. D 79 083528 [0811.0399]
CrossRef  Preprint  SPIRES 
 
E. Ponton and L. Randall, 2009 TeV scale singlet dark matter J. High Energy Phys. JHEP04(2009)080 [0811.1029]
IOPscience  Preprint  SPIRES 
 
K.M. Zurek, 2009 Multi-component dark matter, Phys. Rev. D 79 115002 [0811.4429]
CrossRef  Preprint  SPIRES 
 
P. Grajek, G. Kane, D. Phalen, A. Pierce and S. Watson, 2009 Is the PAMELA positron excess winos?, Phys. Rev. D 79 043506 [0812.4555]
CrossRef  Preprint  SPIRES 
 
Neutralino dark matter from indirect detection revisited, [0807.1508]
Preprint  SPIRES 
 
M. Pospelov and A. Ritz, 2009 Astrophysical signatures of secluded dark matter, Phys. Lett. B 671 391 [0810.1502]
CrossRef  Preprint  SPIRES 
 
M. Fairbairn and J. Zupan, 2009 Two component dark matter J. Cosmol. Astropart. Phys. JCAP07(2009)001 [0810.4147]
IOPscience  Preprint  SPIRES 
 
R. Allahverdi, B. Dutta, K. Richardson-McDaniel and Y. Santoso, 2009 A supersymmetric B- L dark matter model and the observed anomalies in the cosmic rays, Phys. Rev. D 79 075005 [0812.2196]
CrossRef  Preprint  SPIRES 
 
E.J. Chun and J.-C. Park, 2009 Dark matter and sub-GeV hidden U(1) in GMSB models J. Cosmol. Astropart. Phys. JCAP02(2009)026 [0812.0308]
IOPscience  Preprint  SPIRES 
 
A.E. Nelson and C. Spitzer, Slightly non-minimal dark matter in PAMELA and ATIC, [0810.5167]
Preprint  SPIRES 
 
J.-H. Huh, J.E. Kim and B. Kyae, 2009 Two dark matter components in NDMMSSM and PAMELA data, Phys. Rev. D 79 063529 [0809.2601]
CrossRef  Preprint  SPIRES 
 
L. Bergstrom, T. Bringmann and J. Edsjo, 2008 New positron spectral features from supersymmetric dark matter - a way to explain the PAMELA data?, Phys. Rev. D 78 103520 [0808.3725]
CrossRef  Preprint  SPIRES 
 
C.-R. Chen, F. Takahashi and T.T. Yanagida, 2009 High-energy cosmic-ray positrons from hidden-gauge-boson dark matter, Phys. Lett. B 673 255 [0811.0477]
CrossRef  Preprint  SPIRES 
 
S. Baek and P. Ko, 2009 Phenomenology of U(1)Lμ - Lτ charged dark matter at PAMELA and colliders J. Cosmol. Astropart. Phys. JCAP10(2009)011 [0811.1646]
IOPscience  Preprint  SPIRES 
[7]
P.-F. Yin et al., 2009 PAMELA data and leptonically decaying dark matter, Phys. Rev. D 79 023512 [0811.0176]
CrossRef  Preprint  SPIRES 
 
A. Ibarra and D. Tran, 2009 Decaying dark matter and the PAMELA anomaly J. Cosmol. Astropart. Phys. JCAP02(2009)021 [0811.1555]
IOPscience  Preprint  SPIRES 
 
C.-R. Chen, M.M. Nojiri, F. Takahashi and T.T. Yanagida, 2009 Decaying hidden gauge boson and the PAMELA and ATIC/PPB- BETS anomalies, Prog. Theor. Phys. 122 553 [0811.3357]
CrossRef  Preprint  SPIRES 
 
E. Nardi, F. Sannino and A. Strumia, 2009 Decaying dark matter can explain the electron/positron excesses J. Cosmol. Astropart. Phys. JCAP01(2009)043 [0811.4153]
IOPscience  Preprint  SPIRES 
[8]
O. Adriani et al., 2009 A new measurement of the antiproton-to-proton flux ratio up to 100 GeV in the cosmic radiation, Phys. Rev. Lett. 102 051101 [0810.4994]
CrossRef  Preprint  PubMed  SPIRES 
[9]
J. Hisano, S. Matsumoto, M.M. Nojiri and O. Saito, 2005 Non-perturbative effect on dark matter annihilation and gamma ray signature from galactic center, Phys. Rev. D 71 063528 [hep-ph/0412403]
CrossRef  Preprint  SPIRES 
[10]
M. Ibe, H. Murayama and T.T. Yanagida, 2009 Breit-Wigner enhancement of dark matter annihilation, Phys. Rev. D 79 095009 [0812.0072]
CrossRef  Preprint  SPIRES 
[11]
J.D. March-Russell and S.M. West, 2009 WIMPonium and boost factors for indirect dark matter detection, Phys. Lett. B 676 133 [0812.0559]
CrossRef  Preprint  SPIRES 
 
W. Shepherd, T.M.P. Tait and G. Zaharijas, 2009 WIMPonium, Phys. Rev. D 79 055022 [0901.2125]
CrossRef  Preprint  SPIRES 
[12]
J. Diemand et al., 2008 Clumps and streams in the local dark matter distribution, Nature 454 735 [0805.1244]
CrossRef  Preprint  PubMed  SPIRES 
 
V. Springel et al., A blueprint for detecting supersymmetric dark matter in the Galactic halo, [0809.0894]
Preprint  SPIRES 
[13]
A. Birkedal, K. Matchev and M. Perelstein, 2004 Dark matter at colliders: a model-independent approach, Phys. Rev. D 70 077701 [hep-ph/0403004]
CrossRef  Preprint  SPIRES 
[14]
N.F. Bell and T.D. Jacques, 2009 Gamma-ray constraints on dark matter annihilation into charged particles, Phys. Rev. D 79 043507 [0811.0821]
CrossRef  Preprint  SPIRES 
[15]
G. Bertone, M. Cirelli, A. Strumia and M. Taoso, 2009 Gamma-ray and radio tests of the e+e- excess from DM annihilations J. Cosmol. Astropart. Phys. JCAP03(2009)009 [0811.3744]
IOPscience  Preprint  SPIRES 
[16]
L. Bergstrom, G. Bertone, T. Bringmann, J. Edsjo and M. Taoso, 2009 Gamma-ray and radio constraints of high positron rate dark matter models annihilating into new light particles, Phys. Rev. D 79 081303 [0812.3895]
CrossRef  Preprint  SPIRES 
[17]
Fermi gamma-ray space telescope homepage, http://fermi.gsfc.nasa.gov

 
E.A. Baltz et al., 2008 Pre-launch estimates for GLAST sensitivity to dark matter annihilation signals J. Cosmol. Astropart. Phys. JCAP07(2008)013 [0806.2911]
IOPscience  Preprint  SPIRES 
[18]
B.J. Teegarden et al., 2005 INTEGRAL/SPI limits on electron-positron annihilation radiation from the galactic plane, Astrophys. J. 621 296 [astro-ph/0410354]
IOPscience  Preprint  SPIRES 
[19]
DAMA collaboration, R. Bernabei et al., 2008 First results from DAMA/LIBRA and the combined results with DAMA/NaI, Eur. Phys. J. C 56 333 [0804.2741]
CrossRef  Preprint  SPIRES 
[20]
BABAR collaboration, B. Aubert et al., 2007 The e+ e-&to; 2(π+π-0, 2(π+π-)η, K+ K-π+π-π0 and K+ K-π+π-η cross sections measured with initial-state radiation, Phys. Rev. D 76 092005 [Erratum ibid D 77 (2008) 119902] [0708.2461]
CrossRef  Preprint  SPIRES 
 
BABAR collaboration, B. Aubert et al., 2004 Study of e+e- &to; π+ π- π0 process using initial state radiation with BaBar, Phys. Rev. D 70 072004 [hep-ex/0408078]
CrossRef  Preprint  SPIRES 
 
R.R. Akhmetshin et al., 2003 Study of the process e+e- &to; K0L K0S in the c.m. energy range 1.05-1.38 GeV with CMD-2, Phys. Lett. B 551 27 [hep-ex/0211004]
CrossRef  Preprint  SPIRES 
 
M.N. Achasov et al., 1999 The process e+e-&to;π+π-π0 in the energy range 2E0=1.04-1.38 GeV, Phys. Lett. B 462 365 [hep-ex/9910001]
CrossRef  Preprint  SPIRES 
 
S.I. Dolinsky et al., 1991 Summary of experiments with the neutral detector at the e+e- storage ring VEPP-2M, Phys. Rept. 202 99
CrossRef 
 
S.I. Dolinsky et al., 1986 The reaction e+ e- &to;Ω π0 in the center-of-mass energy range from 1.0 GeV to 1.4 GeV, Phys. Lett. B 174 453
CrossRef 
 
V.P. Druzhinin et al., Recent results of experiments with the neutral detector at Vepp-2m, IYF-84-93 [IYF-84-93]

 
CMD-2 and SND collaboration, S.I. Eidelman, 2005 Recent results on low energy e+e- &to; hadrons, Nucl. Phys. (Proc. Suppl.) 144 223
CrossRef 
 
CMD-2 and SND collaboration, S.I. Eidelman, 2007 Nucl. Phys. (Proc. Suppl.) 169 265
CrossRef 
[21]
T. Sjöstrand, S. Mrenna and P. Skands, 2006 PYTHIA 6.4 physics and manual J. High Energy Phys. JHEP05(2006)026 [hep-ph/0603175]
IOPscience  Preprint  SPIRES 
[22]
F. Maltoni and T. Stelzer, 2003 MadEvent: automatic event generation with MadGraph J. High Energy Phys. JHEP02(2003)027 [hep-ph/0208156]
IOPscience  Preprint  SPIRES 
[23]
P. Meade and M. Reece, BRIDGE: Branching Ratio Inquiry/Decay Generated Events, [hep-ph/0703031]
Preprint  SPIRES 
[24]
T. Gleisberg et al., 2009 Event generation with SHERPA 1.1 J. High Energy Phys. JHEP02(2009)007 [0811.4622]
IOPscience  Preprint  SPIRES 
[25]
L. Bergstrom, T. Bringmann, M. Eriksson and M. Gustafsson, 2005 Gamma rays from heavy neutralino dark matter, Phys. Rev. Lett. 95 241301 [hep-ph/0507229]
CrossRef  Preprint  PubMed  SPIRES 
 
T. Bringmann, L. Bergstrom and J. Edsjo, 2008 New gamma-ray contributions to supersymmetric dark matter annihilation J. High Energy Phys. JHEP01(2008)049 [0710.3169]
IOPscience  Preprint  SPIRES 
[26]
M. Cirelli, R. Franceschini and A. Strumia, 2008 Minimal dark matter predictions for galactic positrons, anti-protons, photons, Nucl. Phys. B 800 204 [0802.3378]
CrossRef  Preprint  SPIRES 
 
M. Cirelli and A. Strumia, Minimal dark matter predictions and the PAMELA positron excess, [0808.3867]
Preprint  SPIRES 
[27]
I.V. Moskalenko and A.W. Strong, 1999 Positrons from particle dark-matter annihilation in the galactic halo: propagation Green's functions, Phys. Rev. D 60 063003 [astro-ph/9905283]
CrossRef  Preprint  SPIRES 
[28]
T. Delahaye et al., 2009 Galactic secondary positron flux at the earth, Astron. Astrophys. 501 821 [0809.5268]
CrossRef  Preprint  SPIRES 
[29]
T. Delahaye, R. Lineros, F. Donato, N. Fornengo and P. Salati, 2008 Positrons from dark matter annihilation in the galactic halo: theoretical uncertainties, Phys. Rev. D 77 063527 [0712.2312]
CrossRef  Preprint  SPIRES 
[30]
J.F. Navarro, C.S. Frenk and S.D.M. White, 1996 The structure of cold dark matter halos, Astrophys. J. 462 563 [astro-ph/9508025]
CrossRef  Preprint  SPIRES 
[31]
L. Hernquist, 1990 An analytical model for spherical galaxies and bulges, Astrophys. J. 356 359
CrossRef 
 
H. Zhao, 1996 Analytical models for galactic nuclei Mon. Not. Roy. Astron. Soc. 278 488 [astro-ph/9509122]
Preprint  SPIRES 
[32]
J. Diemand, B. Moore and J. Stadel, 2004 Convergence and scatter of cluster density profiles, Mon. Not. Roy. Astron. Soc. 353 624 [astro-ph/0402267]
CrossRef  Preprint  SPIRES 
[33]
J. Diemand, M. Zemp, B. Moore, J. Stadel and M. Carollo, 2005 Cusps in CDM halos: the density profile of a billion particle halo, Mon. Not. Roy. Astron. Soc. 364 665 [astro-ph/0504215]
CrossRef  Preprint  SPIRES 
[34]
J.N. Bahcall and R.M. Soneira, 1980 The universe at faint magnetidues. 2. Models for the predicted star counts, Astrophys. J. Suppl. 44 73
CrossRef 
[35]
J.F. Navarro et al., 2004 The inner structure of ΛCDM halos III: universality and asymptotic slopes, Mon. Not. Roy. Astron. Soc. 349 1039 [astro-ph/0311231]
CrossRef  Preprint  SPIRES 
[36]
J. Einasto, 1965 Influence of the atmospheric and instrumental dispersion on the brightness distribution in a galaxy Trudy Inst. Astrofiz. Alma-Ata 5 87

[37]
D. Merritt, J.F. Navarro, A. Ludlow and A. Jenkins, 2005 A universal density profile for dark and luminous matter?, Astrophys. J. 624 L85 [astro-ph/0502515]
IOPscience  Preprint  SPIRES 
[38]
J.F. Navarro et al., The diversity and similarity of cold dark matter halos, [0810.1522]
Preprint  SPIRES 
[39]
M. Kuhlen, J. Diemand, P. Madau and M. Zemp, 2008 The via lactea INCITE simulation: galactic dark matter substructure at high resolution, J. Phys. Conf. Ser. 125 012008 [0810.3614]
IOPscience  Preprint  SPIRES 
[40]
J. Stadel et al., Quantifying the heart of darkness with GHALO - a multi-billion particle simulation of our galactic halo, [0808.2981]
Preprint  SPIRES 
[41]
M. Kamionkowski and A. Kinkhabwala, 1998 Galactic halo models and particle dark matter detection, Phys. Rev. D 57 3256 [hep-ph/9710337]
CrossRef  Preprint  SPIRES 
[42]
Particle Data Group collaboration, C. Amsler et al., 2008 Review of particle physics, Phys. Lett. B 667 1
CrossRef 
[43]
M. Kamionkowski and S.M. Koushiappas, 2008 Galactic substructure and direct detection of dark matter, Phys. Rev. D 77 103509 [0801.3269]
CrossRef  Preprint  SPIRES 
[44]
M. Zemp et al., The graininess of dark matter haloes, [0812.2033]
Preprint  SPIRES 
[45]
A. Barrau et al., 2005 Kaluza-Klein dark matter and galactic antiprotons, Phys. Rev. D 72 063507 [astro-ph/0506389]
CrossRef  Preprint  SPIRES 
[46]
V.L. Ginzburg and V.S. Ptuskin, 1976 On the origin of cosmic rays: some problems in high-energy astrophysics, Rev. Mod. Phys. 48 161 [Erratum ibid 48 (1976) 675]
CrossRef 
[47]
For a review see A.W. Strong, I.V. Moskalenko and V.S. Ptuskin, 2007 Cosmic-ray propagation and interactions in the galaxy, Ann. Rev. Nucl. Part. Sci. 57 285 [astro-ph/0701517]
CrossRef  Preprint  SPIRES 
[48]
J.J. Engelmann et. al., 1990 Charge composition and energy spectra of cosmic-ray for elements from Be to Ni - results from HEAO-3-C2 Astron. Astrophys. 233 96

[49]
A.D. Panov et al., Relative abundances of cosmic ray nuclei B-C-N-O in the energy region from 10 GeV/n to 300 GeV/n. Results from ATIC-2 (the science flight of ATIC), [0707.4415]
Preprint  SPIRES 
[50]
D. Maurin, F. Donato, R. Taillet and P. Salati, 2001 Cosmic rays below Z=30 in a diffusion model: new constraints on propagation parameters, Astrophys. J. 555 585 [astro-ph/0101231]
IOPscience  Preprint  SPIRES 
[51]
F. Donato, N. Fornengo, D. Maurin and P. Salati, 2004 Antiprotons in cosmic rays from neutralino annihilation, Phys. Rev. D 69 063501 [astro-ph/0306207]
CrossRef  Preprint  SPIRES 
[52]
A.M. Hillas, 2005 Can diffusive shock acceleration in supernova remnants account for high-energy galactic cosmic rays?, J. Phys. G 31 R95
IOPscience 
[53]
E.A. Baltz and J. Edsjo, 1998 Positron propagation and fluxes from neutralino annihilation in the halo, Phys. Rev. D 59 023511 [astro-ph/9808243]
CrossRef  Preprint  SPIRES 
[54]
S.W. Barwick et al., 1998 The energy spectra and relative abundances of electrons and positrons in the galactic cosmic radiation, Astrophys. J. 498 779 [astro-ph/9712324]
IOPscience  Preprint  SPIRES 
[55]
M. Boezio, Indirect detection of dark matter with PAMELA, talk at the LHC and dark matter workshop, Michigan Center for Theoretical Physics, Ann Arbor MI U.S.A. January 6-10 2009

[56]
J. Hisano, S. Matsumoto, O. Saito and M. Senami, 2006 Heavy Wino-like neutralino dark matter annihilation into antiparticles, Phys. Rev. D 73 055004 [hep-ph/0511118]
CrossRef  Preprint  SPIRES 
[57]
L.C. Tan and L.K. Ng, 1983 Parametrization of hadron inclusive cross-sections in p p collisions extended to very low-energies, J. Phys. G 9 1289
IOPscience 
[58]
F. Donato et al., 2001 Antiprotons from spallation of cosmic rays on interstellar matter, Astrophys. J. 563 172 [astro-ph/0103150]
IOPscience  Preprint  SPIRES 
[59]
Y. Shikaze et al., 2007 Measurements of 0.2 GeV/n to 20 GeV/n cosmic-ray proton and helium spectra from 1997 through 2002 with the BESS spectrometer, Astropart. Phys. 28 154 [astro-ph/0611388]
CrossRef  Preprint  SPIRES 
[60]
T. Sanuki et al., 2000 Precise measurement of cosmic-ray proton and helium spectra with the BESS spectrometer, Astrophys. J. 545 1135 [astro-ph/0002481]
IOPscience  Preprint  SPIRES 
 
S. Haino et al., 2004 Measurements of primary and atmospheric cosmic-ray spectra with the BESS-TeV spectrometer, Phys. Lett. B 594 35 [astro-ph/0403704]
CrossRef  Preprint  SPIRES 
[61]
AMS-01 collaboration, M. Aguilar et al., 2007 Cosmic-ray positron fraction measurement from 1 GeV to 30 GeV with AMS-01, Phys. Lett. B 646 145 [astro-ph/0703154]
CrossRef  Preprint  SPIRES 
 
AMS collaboration, J. Alcaraz et al., 2000 Cosmic protons, Phys. Lett. B 490 27
CrossRef 
 
AMS collaboration, J. Alcaraz et al., 2000 Protons in near earth orbit, Phys. Lett. B 472 215 [hep-ex/0002049]
CrossRef  Preprint  SPIRES 
[62]
F. Donato, D. Maurin, P. Brun, T. Delahaye and P. Salati, 2009 Constraints on WIMP dark matter from the high energy PAMELA &barp;/p data, Phys. Rev. Lett. 102 071301 [0810.5292]
CrossRef  Preprint  PubMed  SPIRES 
[63]
L.J. Gleeson and W.I. Axford, 1967 Cosmic rays in the interplanetary medium, Astrophys. J. 149 L115
CrossRef 
 
L.J. Gleeson and W.I. Axford, 1968 Solar modulation of galactic cosmic rays, Astrophys. J. 154 1011
CrossRef 
[64]
N.W. Evans, F. Ferrer and S. Sarkar, 2004 A 'Baedecker' for the dark matter annihilation signal, Phys. Rev. D 69 123501 [astro-ph/0311145]
CrossRef  Preprint  SPIRES 
[65]
M. Kuhlen, J. Diemand and P. Madau, The dark matter annihilation signal from galactic substructure: predictions for GLAST, [0805.4416]
Preprint  SPIRES 
 
J. Diemand, M. Kuhlen and P. Madau, 2007 Dark matter substructure and gamma-ray annihilation in the Milky Way halo, Astrophys. J. 657 262 [astro-ph/0611370]
IOPscience  Preprint  SPIRES 
[66]
H.E.S.S. collaboration, F. Aharonian et al., 2006 HESS observations of the galactic center region and their possible dark matter interpretation, Phys. Rev. Lett. 97 221102 [Erratum ibid 97 (2006) 249901] [astro-ph/0610509]
CrossRef  Preprint  PubMed  SPIRES 
[67]
H.E.S.S. collaboration, F. Aharonian et al., 2006 Discovery of very-high-energy gamma-rays from the galactic centre ridge, Nature 439 695 [astro-ph/0603021]
CrossRef  Preprint  PubMed  SPIRES 
[68]
S. Ritz and D. Seckel, 1988 Detailed neutrino spectra from cold dark matter annihilations in the sun, Nucl. Phys. B 304 877
CrossRef 
[69]
G. Jungman, M. Kamionkowski and K. Griest, 1996 Supersymmetric dark matter, Phys. Rept. 267 195 [hep-ph/9506380]
CrossRef  Preprint  SPIRES 
[70]
H. Yuksel, S. Horiuchi, J.F. Beacom and S. Ando, 2007 Neutrino constraints on the dark matter total annihilation cross section, Phys. Rev. D 76 123506 [0707.0196]
CrossRef  Preprint  SPIRES 
[71]
J. Hisano, M. Kawasaki, K. Kohri and K. Nakayama, 2009 Neutrino signals from annihilating/decaying dark matter in the light of recent measurements of cosmic ray electron/positron fluxes, Phys. Rev. D 79 043516 [0812.0219]
CrossRef  Preprint  SPIRES 
 
J. Liu, P.-F. Yin and S.-H. Zhu, 2009 Prospects for detecting neutrino signals from annihilating/decaying dark matter to account for the PAMELA and ATIC results, Phys. Rev. D 79 063522 [0812.0964]
CrossRef  Preprint  SPIRES 
[72]
C. Delaunay, P.J. Fox and G. Perez, 2009 Probing dark matter dynamics via earthborn neutrinos at IceCube J. High Energy Phys. JHEP05(2009)099 [0812.3331]
IOPscience  Preprint  SPIRES 
[73]
Super-Kamiokande collaboration, S. Desai et al., 2004 Search for dark matter WIMPs using upward through-going muons in Super-Kamiokande, Phys. Rev. D 70 083523 [Erratum ibid D 70 (2004) 109901] [hep-ex/0404025]
CrossRef  Preprint  SPIRES 
[74]
M. Cirelli, M. Kadastik, M. Raidal and A. Strumia, 2009 Model-independent implications of the e+, e-, anti-proton cosmic ray spectra on properties of dark matter, Nucl. Phys. B 813 1 [0809.2409]
CrossRef  Preprint  SPIRES 
[75]
A. Putze, L. Derome, D. Maurin, L. Perotto and R. Taillet, A Markov chain Monte Carlo for galactic cosmic ray physics: I. Method and results for the leaky box model, [0808.2437]
Preprint  SPIRES 
[76]
I.V. Moskalenko, A.W. Strong, J.F. Ormes and M.S. Potgieter, 2002 Secondary antiprotons and propagation of cosmic rays in the galaxy and heliosphere, Astrophys. J. 565 280 [astro-ph/0106567]
IOPscience  Preprint  SPIRES 
[77]
A.W. Strong and I.V. Moskalenko, 1998 Propagation of cosmic-ray nucleons in the galaxy, Astrophys. J. 509 212 [astro-ph/9807150]
IOPscience  Preprint  SPIRES 
[78]
T. Kobayashi et al., High energy cosmic-ray electrons beyond 100 GeV, prepared for 26th International Cosmic Ray Conference (ICRC 99), Salt Lake City Utah U.S.A. August 17-25 1999 [http://www.slac.stanford.edu/spires/find/hep/www?irn=4275659]

[79]
P. Meade, M. Papucci and T. Volansky, work in progress

[80]
H.E.S.S. collaboration, F. Aharonian et al., 2008 The energy spectrum of cosmic-ray electrons at TeV energies, Phys. Rev. Lett. 101 261104 [0811.3894]
CrossRef  Preprint  PubMed  SPIRES 
[81]
J. Mardon, Y. Nomura, D. Stolarski and J. Thaler, 2009 Dark matter signals from cascade annihilations J. Cosmol. Astropart. Phys. JCAP05(2009)016 [0901.2926]
IOPscience  Preprint  SPIRES 
[82]
The abundance of N-14 at the cosmic-ray source - a study using new fragmentation cross sections, Astrophys. J. 340 1989 1124
CrossRef 
[83]
P. Blasi, Direct measurements, acceleration and propagation of cosmic rays, [0801.4534]
Preprint  SPIRES 
[84]
T. Kamae, N. Karlsson, T. Mizuno, T. Abe and T. Koi, 2006 Parameterization of γ, e± and neutrino spectra produced by p p interaction in astronomical environment, Astrophys. J. 647 692 [Erratum ibid 662 (2007) 779] [astro-ph/0605581]
IOPscience  Preprint  SPIRES 
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