首页> 外文期刊>The Astrophysical Journal. Letters >DARK MATTER IN THE CLASSICAL DWARF SPHEROIDAL GALAXIES: A ROBUST CONSTRAINT ON THE ASTROPHYSICAL FACTOR FOR γ -RAY FLUX CALCULATIONS
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DARK MATTER IN THE CLASSICAL DWARF SPHEROIDAL GALAXIES: A ROBUST CONSTRAINT ON THE ASTROPHYSICAL FACTOR FOR γ -RAY FLUX CALCULATIONS

机译:经典矮球形球状星系中的暗物质:γ射线通量计算的天体因子的稳健约束

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摘要

We present a new analysis of the relative detectability of dark matter annihilation in the Milky Way’s eight “classical” dwarf spheroidal (dSph) satellite galaxies. Ours is similar to previous analyses in that we use Markov-Chain Monte Carlo techniques to fit dark matter halo parameters to empirical velocity dispersion profiles via the spherical Jeans equation, butmore general in the sense that we do not adopt priors derived from cosmological simulations. We show that even without strong constraints on the shapes of dSph dark matter density profiles (we require only that the inner profile satisfies -limr→0 d ln ρ/d ln r - 1), we obtain a robust and accurate constraint on the astrophysical component of a prospective dark matter annihilation signal, provided that the integration angle is approximately twice the projected half-light radius of the dSph divided by distance to the observer, α_(int) - 2_(rh)/d. Using this integration angle, which represents a compromise between maximizing prospective flux and minimizing uncertainty in the dSph’s dark matter distribution, we calculate the relative detectability of the classical dSphs by ground- and space-based γ -ray observatories.
机译:我们对银河系的八个“经典”矮球体(dSph)卫星星系中暗物质an灭的相对可检测性进行了新的分析。我们的研究与以前的分析相似,我们使用马尔可夫链蒙特卡洛技术通过球面Jeans方程将暗物质晕参数拟合到经验速度色散剖面,但更笼统的意义是我们不采用从宇宙学模拟中得出的先验。我们表明,即使在dSph暗物质密度剖面的形状上没有严格的限制(我们仅要求内部剖面满足-limr→0 d lnρ/ d ln r-1),我们仍对天体物理学获得了鲁棒而准确的约束前提是积分角约为dSph的投影半光半径的两倍,除以与观察者的距离α_(int)-2_(rh)/ d。利用这个积分角,它代表了最大化预期通量和最小化dSph暗物质分布的不确定性之间的折衷,我们通过地面和基于空间的γ射线观测站计算了经典dSph的相对可探测性。

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