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Extended Theories of Gravity

机译:引力扩展理论

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Extended Theories of Gravity can be considered as a new paradigm to cure shortcomings of General Relativity at infrared and ultraviolet scales. They are an approach that, by preserving the undoubtedly positive results of Einstein's theory, is aimed to address conceptual and experimental problems recently emerged in astrophysics, cosmology and High Energy Physics. In particular, the goal is to encompass, in a self-consistent scheme, problems like inflation, dark energy, dark matter, large scale structure and, first of all, to give at least an effective description of Quantum Gravity. We review the basic principles that any gravitational theory has to follow. The geometrical interpretation is discussed in a broad perspective in order to highlight the basic assumptions of General Relativity and its possible extensions in the general framework of gauge theories. Principles of such modifications are presented, focusing on specific classes of theories like f(R)-gravity and scalar-tensor gravity in the metric and Palatini approaches. The special role of torsion is also discussed. The conceptual features of these theories are fully explored and attention is paid to the issues of dynamical and conformal equivalence between them considering also the initial value problem. A number of viability criteria are presented considering the post-Newtonian and the post-Minkowskian limits. In particular, we discuss the problems of neutrino oscillations and gravitational waves in extended gravity. Finally, future perspectives of extended gravity are considered with possibility to go beyond a trial and error approach.
机译:引力扩展理论可以被认为是解决广义相对论在红外和紫外尺度下的缺陷的新范式。通过保留爱因斯坦理论无疑的积极成果,它们是一种方法,旨在解决天体物理学,宇宙学和高能物理领域最近出现的概念和实验问题。具体而言,目标是在一个自洽的方案中涵盖诸如通货膨胀,暗能量,暗物质,大型结构之类的问题,首先,至少要对量子引力进行有效描述。我们回顾了万有引力理论必须遵循的基本原理。为了突出广义相对论的基本假设及其在规范理论的一般框架中的可能扩展,对几何解释进行了广泛的讨论。提出了此类修改的原理,重点关注特定的理论类,例如公制和Palatini方法中的f(R)重力和标量张量重力。还讨论了扭力的特殊作用。充分探讨了这些理论的概念特征,并在考虑初始值问题的同时,关注它们之间的动力学和共形对等问题。考虑到牛顿后极限和米科夫斯基后极限,提出了许多可行性标准。特别是,我们讨论了引力作用下中微子振荡和引力波的问题。最后,未来重力扩展的观点被认为有可能超越试错法。

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