Dual Gravitational Wave Signatures of Instant Preheating

Wei-Yu Hu, Kazunori Nakayama, Volodymyr Takhistov, Yong Tang
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Abstract

In the instant preheating scenario efficient particle production occurs immediately following the period of inflationary expansion in the early Universe. We demonstrate that instant preheating predicts unique gravitational wave (GW) signals arising from two distinct origins. One source is the bremsstrahlung GWs produced through the decay of superheavy particles, an inevitable consequence of instant preheating. The other is GWs generated from the nonlinear dynamics of the inflaton and coupled scalar fields. Using numerical simulations, we show that the peak of the GW spectrum shifts depending on the coupling constants of the theory. The detection of these dual GW signatures, characteristic of instant preheating, provides novel opportunities for probing the dynamics of the early Universe.
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瞬间预热的双重引力波信号
在瞬时预热假设中,高效粒子的产生紧随早期宇宙的膨胀扩张期之后。我们证明,瞬时预热预言了来自两个不同来源的独特引力波(GW)信号。一个来源是超重粒子衰变产生的轫致辐射引力波,这是瞬时预热的必然结果。另一种是由流入子和耦合标量场的非线性动力学产生的巨波。通过数值模拟,我们发现 GW 谱的峰值会随着理论耦合常数的变化而变化。探测这些具有瞬时预热特征的双GW信号,为探测早期宇宙的动力学提供了新的机会。
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