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      Cosmic-ray positrons from mature gamma-ray pulsars

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      Astronomy & Astrophysics
      EDP Sciences

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          Supersymmetric Dark Matter

          There is almost universal agreement among astronomers that most of the mass in the Universe and most of the mass in the Galactic halo is dark. Many lines of reasoning suggest that the dark matter consists of some new, as yet undiscovered, weakly-interacting massive particle (WIMP). There is now a vast experimental effort being surmounted to detect WIMPS in the halo. The most promising techniques involve direct detection in low-background laboratory detectors and indirect detection through observation of energetic neutrinos from annihilation of WIMPs that have accumulated in the Sun and/or the Earth. Of the many WIMP candidates, perhaps the best motivated and certainly the most theoretically developed is the neutralino, the lightest superpartner in many supersymmetric theories. We review the minimal supersymmetric extension of the Standard Model and discuss prospects for detection of neutralino dark matter. We review in detail how to calculate the cosmological abundance of the neutralino and the event rates for both direct- and indirect-detection schemes, and we discuss astrophysical and laboratory constraints on supersymmetric models. We isolate and clarify the uncertainties from particle physics, nuclear physics, and astrophysics that enter at each step in the calculation. We briefly review other related dark-matter candidates and detection techniques.
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            Magnetically striped relativistic magnetohydrodynamic winds - The Crab Nebula revisited

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              A test of the galactic origin of gamma-ray bursts

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                Author and article information

                Journal
                Astronomy & Astrophysics
                A&A
                EDP Sciences
                0004-6361
                1432-0746
                March 2001
                March 15 2001
                March 2001
                : 368
                : 3
                : 1063-1070
                Article
                10.1051/0004-6361:20010021
                574712c1-ab4f-4316-a64d-e82775e3612d
                © 2001
                History

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