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String theory as a Lilliputian world

机译:弦论作为一个小人国世界

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摘要

Lattice regularizations of the bosonic string do not allow us to probe the tachyon. This has often been viewed as the reason why these theories have never managed to make any contact to standard continuum string theories when the dimension of spacetime is larger than two. We study the continuum string theory in large spacetime dimensions where simple mean field theory is reliable. By keeping carefully the cutoff we show that precisely the existence of a tachyon makes it possible to take a scaling limit which reproduces the lattice-string results. We compare this scaling limit with another scaling limit which reproduces standard continuum-string results. If the people working with lattice regularizations of string theories are akin to Gulliver they will view the standard string-world as a Lilliputian world no larger than a few lattice spacings. (C) 2016 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license.
机译:玻色子弦的格正则化不允许我们探查转速计。通常被认为是当时空的维数大于2时,这些理论从未与标准连续体字符串理论进行任何联系的原因。我们研究大时空维度上的连续弦理论,其中简单均值场理论是可靠的。通过小心地保持截止值,我们表明,精确的转速计的存在使得有可能采取缩放极限,从而再现晶格弦结果。我们将此缩放极限与另一个再现标准连续谱字符串结果的缩放极限进行比较。如果从事弦理论的格正则化工作的人们类似于格列佛,他们将把标准的弦世界视为一个Lilliputian世界,不超过几个格间距。 (C)2016作者。由Elsevier B.V.发布。这是CC BY许可下的开放获取文章。

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