论文标题

雕刻开弦S-matrix的空间

Carving out the Space of Open-String S-matrix

论文作者

Huang, Yu-tin, Liu, Jin-Yu, Rodina, Laurentiu, Wang, Yihong

论文摘要

在本文中,我们探讨了开放的字符串振幅作为时空S-Matrix和1D CFT相关函数的双重作用。我们在两个方向上追求这一通信。首先,从穿着koba-nielsen因子的一般磁盘开始开始,我们证明了振幅分解残基的交换对称性迫使积分可以在SL(2,R)共形块上扩展。此外,与单位性相关的阳性约束意味着SL(2,r)块必须以线性组合为单位,在溶液空间中,Virasoro块在“扭结”中出现。换句话说,Virasoro对称性在一致分解的边界处产生。接下来,我们考虑低能量EFT描述,其中单位性表现为耦合必须居住的电子。世界表格描述的存在意味着,通过Koba-Nielsen因素,单构成关系,在EFT耦合之间施加了代数身份。我们以有限的导数顺序证明,“单摩托平面”和efthedron的相交是耦合的一个很小的岛,随着衍生级的增加,该岛的相交继续缩小。在第八个衍生订单上,在三维单型平面上,该岛上的宽度将其宽度固定在1.5 $ \%$($ζ(3)$)和0.2 $ \%$($ζ(5)$)方面,相对于超级弦乐的答案。这使我们猜想四点开放的超弦幅度可以通过单旋术平面和efthedron的相交的几何形状完全确定。

In this paper, we explore the open string amplitude's dual role as a space-time S-matrix and a 1D CFT correlation function. We pursue this correspondence in two directions. First, beginning with a general disk integrand dressed with a Koba-Nielsen factor, we demonstrate that exchange symmetry for the factorization residue of the amplitude forces the integrand to be expandable on SL(2,R) conformal blocks. Furthermore, positivity constraints associated with unitarity imply the SL(2,R) blocks must come in linear combinations for which the Virasoro block emerges at the "kink" in the space of solutions. In other words, Virasoro symmetry arises at the boundary of consistent factorization. Next, we consider the low energy EFT description, where unitarity manifests as the EFThedron in which the couplings must live. The existence of a worldsheet description implies, through the Koba-Nielsen factor, monodromy relations which impose algebraic identities amongst the EFT couplings. We demonstrate at finite derivative order that the intersection of the "monodromy plane" and the EFThedron carves out a tiny island for the couplings, which continues to shrink as the derivative order is increased. At the eighth derivative order, on a three-dimensional monodromy plane, the intersection fixes the width of this island to around 1.5$\%$ (of $ζ(3)$) and 0.2$\%$ (of $ζ(5)$) with respect to the super string answer. This leads us to conjecture that the four-point open superstring amplitude can be completely determined by the geometry of the intersection of the monodromy plane and the EFThedron.

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