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A scaling theory for the long-range to short-range crossover and an infrared duality

机译:用于短程交叉的远程和红外二元性的缩放理论

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We study the second-order phase transition in the d-dimensional Ising model with long-range interactions decreasing as a power of the distance 1/r(d+s). For s below some known value s(*), the transition is described by a conformal field theory without a local stress tensor operator, with critical exponents varying continuously as functions of s. At s = s(*), the phase transition crosses over to the short-range universality class. While the location s(*) of this crossover has been known for 40 years, its physics has not been fully understood, the main difficulty being that the standard description of the long-range critical point is strongly coupled at the crossover. In this paper we propose another field-theoretic description which, on the contrary, is weakly coupled near the crossover. We use this description to clarify the nature of the crossover and make predictions about the critical exponents. That the same long-range critical point can be reached from two different UV descriptions provides a new example of infrared duality.
机译:我们研究了D维考调模型中的二阶相转变,远程相互作用减小为距离1 / R(D + S)。对于以下一些已知的值S(*),转换由不正常的现场理论描述而没有局部应力张量操作员,其作为S的功能连续变化。在s = s(*),相变十字交叉到短程普遍性类。虽然该交叉的位置S(*)已知40年来,但其物理尚未完全明白,主要难点是远程临界点的标准描述在交叉中强烈耦合。在本文中,我们提出了另一个领域 - 理论描述,相反,相反,弱耦合在交叉附近。我们使用本说明书来澄清交叉的性质并对临界指数进行预测。可以从两个不同的UV描述达到相同的远程关键点提供了一种红外二元性的新示例。

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