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Effect of cosmological evolution on Solar System constraints and on the scalarization of neutron stars in massless scalar-tensor theories

机译:宇宙演化对无大抽量张量理论中的中子恒星的规划性的影响

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摘要

Certain scalar-tensor theories of gravity that generalize Jordan-Fierz-Brans-Dicke theory are known to predict nontrivial phenomenology for neutron stars. In these theories, first proposed by Damour and Esposito-Farese, the scalar field has a standard kinetic term and couples conformally to the matter fields. The weak equivalence principle is therefore satisfied, but scalar effects may arise in strong-field regimes, e.g., allowing for violations of the strong equivalence principle in neutron stars ("spontaneous scalarization") or in sufficiently tight binary neutron-star systems ("dynamical/induced scalarization"). The original scalar-tensor theory proposed by Damour and Esposito-Farese is in tension with Solar System constraints (for couplings that lead to scalarization), if one accounts for cosmological evolution of the scalar field and no mass term is included in the action. We extend here the conformal coupling of that theory, in order to ascertain if, in this way, Solar System tests can be passed, while retaining a nontrivial phenomenology for neutron stars. We find that, even with this generalized conformal coupling, it is impossible to construct a theory that passes both big bang nucleosynthesis and Solar System constraints, while simultaneously allowing for scalarization in isolated/binary neutron stars.
机译:众所周知,某些标量张的重力理论揭示了Jordan-Fierz-Brans-Dicke理论,以预测中子恒星的非动力现象学。在这些理论中,首先由DAMOUT和ESPOSISO-FARESE提出,标量场具有标准动力学术语和伴侣,符合物质领域。因此满足弱等价原理,但是在强大的领域制度中可能出现标量效应,例如,允许违反中子恒星中的强度等效原理(“自发标准化”)或足够紧的二元中子星系(“动态/诱导的标定化“)。 DAMOUT和ESPOSISO-FARESE提出的原始标量张张解波理论与太阳系限制(用于导致标定化的耦合),如果一个帐户占标量场的宇宙学演变,并且没有批量术语被包括在动作中。我们在这里延伸了该理论的共形耦合,以确定是否以这种方式,可以通过太阳系测试,同时保持中子恒星的非增强现象学。我们发现,即使通过这种广义的共形耦合,也不可能构建一种经过大爆炸核合成和太阳系约束的理论,同时允许在孤立/二元中子恒星中进行标准化。

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