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Physical aspects of the space-time torsion [Review]

机译:时空扭转的物理方面[综述]

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We review many quantum aspects of torsion theory and discuss the possibility of the space-time torsion to exist and to be detected. The paper starts, in Section 2, with a pedagogical introduction to the classical gravity with torsion, that includes also interaction of torsion with matter fields. Special attention is paid to the conformal properties of the theory. In Section 3, the renormalization of quantum theory of matter fields and related topics, like renormalization group, effective potential and anomalies, are considered. Section 4 is devoted to the action of spinning and spinless particles in a space-time with torsion, and to the discussion of possible physical effects generated by the background torsion. In particular, we review the upper bounds for the magnitude of the background torsion which are known from the literature. In Section 5, the comprehensive study of the possibility of a theory for the propagating completely antisymmetric torsion field is presented. It is supposed that the propagating field should be quantized, and that its quantum effects must be described by, at least, some effective low-energy quantum field theory. We show, that the propagating torsion may be consistent with the principles of quantum theory only in the case when the torsion mass is much greater than the mass of the heaviest fermion coupled to torsion. Then, universality of the fermion-torsion interaction implies that torsion itself has a huge mass, and cannot be observed in realistic experiments. Thus, the theory of quantum matter fields on the classical torsion background can be formulated in a consistent way, while the theory of dynamical torsion meets serious obstacles. In Section 6, we briefly discuss the string-induced torsion and the possibility to induce torsion action and torsion itself through the quantum effects of matter fields. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 206]
机译:我们回顾了扭转理论的许多量子方面,并讨论了时空扭转存在和被检测到的可能性。本文从第2节开始,对经典重力扭转理论进行了教学介绍,其中还包括了扭转与物质场的相互作用。要特别注意该理论的保形性质。在第3节中,研究了物质场量子理论的重归一化和相关主题,例如重归一化组,有效势和异常。第4节专门讨论在时空中具有扭转的旋转和无纺粒子的作用,并讨论背景扭转可能产生的物理影响。特别是,我们回顾了文献中已知的背景扭转幅度的上限。在第5节中,将对传播完全反对称扭转场的理论的可能性进行全面研究。假定应该对传播场进行量化,并且至少必须通过一些有效的低能量子场论来描述其量子效应。我们证明,只有在扭转质量远大于与扭转耦合的最重费米子质量的情况下,传播的扭转才可能与量子理论的原理相一致。然后,费米子-扭转相互作用的普遍性意味着扭转本身具有巨大的质量,在实际实验中无法观察到。因此,经典扭转背景下的量子场理论可以用一致的方式来表述,而动力扭转理论则遇到了严重的障碍。在第6节中,我们简要讨论了弦引起的扭转以及通过物质场的量子效应引起扭转作用和扭转本身的可能性。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:206]

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