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Evidence for the strongest version of the 4d a-theorem via a-maximization along RG flows

机译:通过沿RG流的a最大化获得4d a定理最强形式的证据

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摘要

In earlier work, we (KI and BW) gave a two line "almost proof" (for supersymmetric RG flows) of the weakest form of the conjectured 4d alpha-theorem, that alpha(IR) < alpha(UV), using our result that the exact superconformal R-symmetry of 4d SCFTs maximizes alpha = 3 Tr R-3 - Tr R. The proof was incomplete because of two identified loopholes: theories with accidental symmetries, and the fact that it is only a local maximum of alpha. Here we discuss and extend a proposal of Kutasov (which helps close the latter loophole) in which alpha-maximization is generalized away from the endpoints of the RG flow, with Lagrange multipliers that are conjectured to be identified with the running coupling constants. alpha-maximization then yields a monotonically decreasing "alpha-function" along the RG flow to the IR. As we discuss, this proposal in fact suggests the strongest version of the alpha-theorem: that 4d RG flows are gradient flows of an a-function, with positive-definite metric. In the perturbative limit, the RG flow metric thus obtained is shown to agree precisely with that found by very different computations by Osborn and collaborators. As examples, we discuss a new class of 4d SCFTs, along with their dual descriptions and IR phases, obtained from SQCD by coupling some of the flavors to added singlets. (C) 2004 Published by Elsevier B.V.
机译:在较早的工作中,我们(KI和BW)使用我们的结果给出了猜想的4d alpha定理的最弱形式的两行“几乎证明”(针对超对称RG流)。 4d SCFT的精确超保形R-对称性使alpha = 3 Tr R-3-Tr R最大化。由于两个已发现的漏洞:带有偶然对称性的理论,以及它仅仅是alpha的局部最大值这一事实,证明不完整。在这里,我们讨论并扩展了Kutasov的建议(这有助于弥合后者的漏洞),其中α最大化被推导远离RG流的端点,并推测有拉格朗日乘子被认为与运行耦合常数一起被识别。然后,alpha最大化会沿着RG流向IR的方向单调减小“ alpha函数”。正如我们所讨论的那样,该建议实际上提出了最强的α定理:4d RG流是具有正定度量的a函数的梯度流。在摄动极限内,如此获得的RG流量度量显示出与Osborn和合作者通过非常不同的计算得出的结果精确一致。作为示例,我们讨论了新的4d SCFT类,以及它们的双重描述和IR阶段,它们是通过将一些风味剂与添加的单峰偶联而从SQCD获得的。 (C)2004由Elsevier B.V.发布

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