论文标题
伪金石暗物质:引力波和直接检测盲点
Pseudo-Goldstone dark matter: gravitational waves and direct-detection blind spots
论文作者
论文摘要
伪石暗物质是具有动量直接检测横截面的热遗物。我们研究了由标准模型的复杂单词扩展产生的伪石暗物质的最通用模型。该模型的新U(1)对称性被明确分解为类似CP的对称性稳定暗物质。我们研究了直接检测约束与宇宙相变的强度和可能的重力波信号的相互作用。虽然大u(1)破裂的相互作用可以产生一个大型的直接检测横截面,但有盲点被抑制横截面。我们发现,较大的立方耦合会导致早期宇宙中的一阶相变。我们表明,存在参数空间的区域,其中拟议的大爆炸观察者检测器将来可以在未来检测到所得的重力波信号。
Pseudo-Goldstone dark matter is a thermal relic with momentum-suppressed direct-detection cross section. We study the most general model of pseudo-Goldstone dark matter arising from the complex-singlet extension of the Standard Model. The new U(1) symmetry of the model is explicitly broken down to a CP-like symmetry stabilising dark matter. We study the interplay of direct-detection constraints with the strength of cosmic phase transitions and possible gravitational-wave signals. While large U(1)-breaking interactions can generate a large direct-detection cross section, there are blind spots where the cross section is suppressed. We find that sizeable cubic couplings can give rise to a first-order phase transition in the early universe. We show that there exist regions of the parameter space where the resulting gravitational-wave signal can be detected in future by the proposed Big Bang Observer detector.