Non-perturbative approach for scalar particle production in Higgs-$R^2$ inflation

Flavio Pineda, Luis O. Pimentel
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Abstract

We investigate the non-perturbative production of scalar particles within the Higgs-$R^2$ inflation model, focusing on a massive spectator field that interacts gravitationally via a non-minimal coupling to the Ricci scalar $R$. By transforming the model to the Einstein frame, where direct couplings between inflationary dynamics and the spectator field emerge, we analyze both perturbative and non-perturbative particle production. We solve the spectator field equation numerically, using the Bogolyubov transformation, to calculate the comoving particle density. Our findings indicate that particle production occurs for light particles with conformal coupling and for masses $m_\chi > M/2$ in the minimally coupled scenario.
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希格斯-$R^2$膨胀中标量粒子产生的非微扰方法
我们研究了希格斯-$R^2$膨胀模型中标量粒子的非微扰产生,重点研究了通过与里奇标量$R$的非最小耦合进行引力相互作用的大质量旁观者场。通过将模型转换到爱因斯坦框架,膨胀动力学与旁观者场之间出现了直接耦合,我们分析了粒子的微扰和非微扰产生。我们利用波哥留波夫变换对旁观者场方程进行数值求解,计算出移动粒子密度。我们的研究结果表明,在最小耦合情况下,具有共形耦合的轻粒子和质量为$m_\chi >M/2$的粒子会产生。
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