双暗宇称的规范起源及其对暗物质的启示

D. V. Loi, P. V. Dong
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摘要

暗物质必须在宇宙时间尺度上保持稳定,这就要求存在一种稳定的对称性,这种对称性由暗电荷D推导而来。这种暗荷的存在可能会影响电荷的量子化,这在理论上会使电荷发生位移,从而使超荷变成一个新的规范扩展,$SU(3)_C\o乘以SU(2)_L\o乘以U(1)_Y\o乘以U(1)_N$,其中$N$决定$D=T_3+N$,类似于$Q=T_3+Y$。这项工作的新观察是,暗电荷被分解为两种暗宇称,$Z_2$和$Z'_2$,这随后暗示了暗物质的三种情况。详细研究了双组分暗物质场景下的遗迹密度和直接探测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gauge Origin of Double Dark Parity and Implication for Dark Matter
Dark matter must be stabilized over the cosmological timescale, which demands the existence of a stabilizing symmetry, derived by a dark charge, $D$. The existence of this dark charge may affect the quantization of electric charge, which theoretically shifts the electric charge, thus the hypercharge to a novel gauge extension, $SU(3)_C\otimes SU(2)_L\otimes U(1)_Y\otimes U(1)_N$, where $N$ determines $D=T_3+N$, similar to $Q=T_3+Y$. New observation of this work is that the dark charge is broken down to two kinds of dark parity, $Z_2$ and $Z'_2$, which subsequently imply three scenarios of dark matter. The relic density and direct detection for the scenario of two-component dark matter are investigated in detail.     
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