论文标题

任意旋转的量子场理论巨大多重组和palatini量子重力

Quantum field theories of arbitrary-spin massive multiplets and Palatini quantum gravity

论文作者

Anselmi, Damiano

论文摘要

我们制定了任意自旋大规模领域的量子场理论。物理和假颗粒的存在分为多重,使得能够同时满足当地,单位性和重降低的要求。这些理论接纳了立方体和四分之一的自我互动,并且可以与量子重力和量规场耦合。最简单的不可还原的骨气和费米子多重组是由交替的物理和假颗粒的塔制成的。它们的质谱受RG不变关系的限制,仅取决于一两个质量。重归于组流量的固定点是尺度不变的,但不一定是保形不变的。带有假子的量子重力的Palatini版本相当于非帕拉蒂尼的一个耦合到订单3的特殊多重多的多个。

We formulate quantum field theories of massive fields of arbitrary spins. The presence of both physical and fake particles, organized into multiplets, makes it possible to fulfill the requirements of locality, unitarity and renormalizability at the same time. The theories admit cubic and quartic self-interactions and can be coupled to quantum gravity and gauge fields. The simplest irreducible bosonic and fermionic multiplets are made of towers of alternating physical and fake particles. Their mass spectrum is constrained by RG invariant relations and depends on just one or two masses. The fixed points of the renormalization-group flow are scale invariant, but not necessarily conformal invariant. The Palatini version of quantum gravity with fakeons is equivalent to the non-Palatini one coupled to a peculiar multiplet of order 3. As a consequence, it is equally renormalizable and unitary.

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