A Model-independent Radio Telescope Dark Matter Search in the L and S Bands

Aya Keller, Nicole Wolff and Karl van Bibber
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Abstract

Ultralight bosonic dark matter in its most general form can be detected through its decay or annihilation to a quasimonochromatic radio line. Assuming only that this line is consistent with the most general properties of the expected phase space of our Milky Way halo, we have developed and carried out a novel model-independent search for dark matter in the L and S bands. More specifically, the search selects for a line that exhibits a Doppler shift with position according to the solar motion through a static halo and similarly varies in intensity with position with respect to the Galactic center. Over the combined L- and S-band range 1020–2700 MHz, radiative annihilation of dark matter is excluded above 〈σv〉 ≈ 10−30 cm3 s−1, and for decay above λ ≈ 10−32 s−1.
L和S波段的非模型射电望远镜暗物质搜索
超轻玻色子暗物质的最一般形式可以通过其衰变或湮灭到准单色射电线来探测。仅假设这条线与我们银河系光晕预期相空间的最一般性质相一致,我们已经开发并开展了一种新颖的模型无关的L和S波段暗物质搜索。更具体地说,研究选择了一条线,它根据太阳通过静态晕的运动表现出多普勒位移,并且类似地,相对于银河系中心,其强度随位置变化。在1020 ~ 2700 MHz的L波段和s波段组合范围内,< σv >≈10−30 cm3 s−1以上和λ≈10−32 s−1以上的暗物质的辐射湮灭被排除。
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