Scale invariance vs conformal invariance
Yu Nakayama

TL;DR
This review explores the relationship between scale and conformal invariance in quantum field theories, emphasizing the proven equivalence in two dimensions and discussing the open question of their relation in higher dimensions.
Contribution
It summarizes known results, presents new insights, and discusses the potential for symmetry enhancement from scale to conformal invariance in higher dimensions.
Findings
In 2D, scale invariance implies conformal invariance under certain conditions.
No known examples of scale-invariant but non-conformal theories in 4D under specified assumptions.
Holographic arguments support the symmetry enhancement from scale to conformal invariance.
Abstract
In this review article, we discuss the distinction and possible equivalence between scale invariance and conformal invariance in relativistic quantum field theories. Under some technical assumptions, we can prove that scale invariant quantum field theories in dimension necessarily possess the enhanced conformal symmetry. The use of the conformal symmetry is well appreciated in the literature, but the fact that all the scale invariant phenomena in dimension enjoy the conformal property relies on the deep structure of the renormalization group. The outstanding question is whether this feature is specific to dimension or it holds in higher dimensions, too. As of January 2014, our consensus is that there is no known example of scale invariant but non-conformal field theories in dimension under the assumptions of (1) unitarity, (2) Poincar\'e invariance (causality),…
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Taxonomy
TopicsBlack Holes and Theoretical Physics · Cosmology and Gravitation Theories · Noncommutative and Quantum Gravity Theories
