Engineering small flux superpotentials and mass hierarchies

被引:12
作者
Bastian, Brice [1 ]
Grimm, Thomas W. [1 ]
van de Heisteeg, Damian [1 ]
机构
[1] Univ Utrecht, Inst Theoret Phys, Princeton pl 5, NL-3584 CC Utrecht, Netherlands
基金
荷兰研究理事会;
关键词
Flux Compactifications; Superstring Vacua; COMPACTIFICATIONS;
D O I
10.1007/JHEP02(2023)149
中图分类号
O412 [相对论、场论]; O572.2 [粒子物理学];
学科分类号
摘要
We study the stabilization of complex structure moduli in Type IIB flux compactifications by using recent general results about the form of the superpotential and Kahler potential near the boundaries of the moduli space. In this process we show how vacua with an exponentially small vacuum superpotential can be realized systematically and understood conceptually within asymptotic Hodge theory. We distinguish two types of vacua realizing such superpotentials that differ by the mass scales of the stabilized moduli. Masses polynomially depending on the moduli arise if the superpotential contains exponential corrections whose existence is required to ensure the non-degeneracy of the moduli space metric. We use the fact that such essential corrections are controlled by asymptotic Hodge theory and have recently been constructed for all one- and two-moduli asymptotic regimes. These insights allow us to obtain new vacua near boundaries in complex structure moduli space that include Seiberg-Witten points. In these examples we find that the scale of the vacuum superpotential can be bounded from below through the exponential of the negative D3-brane tadpole.
引用
收藏
页数:25
相关论文
共 54 条
[1]   Small Flux Superpotentials for Type IIB Flux Vacua Close to a Conifold [J].
alvarez-Garcia, Rafael ;
Blumenhagen, Ralph ;
Brinkmann, Max ;
Schlechter, Lorenz .
FORTSCHRITTE DER PHYSIK-PROGRESS OF PHYSICS, 2020, 68 (11-12)
[2]  
Bakker B, 2023, Arxiv, DOI [arXiv:2112.06995, 10.46298/epiga.2023.specialvolumeinhonourofclairevoisin.9626, DOI 10.46298/EPIGA.2023.SPECIALVOLUMEINHONOUROFCLAIREVOISIN.9626]
[3]   Systematics of moduli stabilisation in Calabi-Yau flux compactifications [J].
Balasubramanian, V ;
Berglund, P ;
Conlon, JP ;
Quevedo, F .
JOURNAL OF HIGH ENERGY PHYSICS, 2005, (03) :133-154
[4]  
Bastian B, 2021, Arxiv, DOI arXiv:2105.02232
[5]   Weak gravity bounds in asymptotic string compactifications [J].
Bastian, Brice ;
Grimm, Thomas W. ;
van de Heisteeg, Damian .
JOURNAL OF HIGH ENERGY PHYSICS, 2021, 2021 (06)
[6]   Algorithmically Solving the Tadpole Problem [J].
Bena, Iosif ;
Blaback, Johan ;
Grana, Mariana ;
Lust, Severin .
ADVANCES IN APPLIED CLIFFORD ALGEBRAS, 2022, 32 (01)
[7]   The tadpole problem [J].
Bena, Iosif ;
Blaback, Johan ;
Grana, Mariana ;
Lust, Severin .
JOURNAL OF HIGH ENERGY PHYSICS, 2021, 2021 (11)
[8]   On the Search for Low W0 [J].
Broeckel, Igor ;
Cicoli, Michele ;
Maharana, Anshuman ;
Singh, Kajal ;
Sinha, Kuver .
FORTSCHRITTE DER PHYSIK-PROGRESS OF PHYSICS, 2022, 70 (06)
[9]   The convex hull swampland distance conjecture and bounds on non-geodesics [J].
Calderon-Infante, Jose ;
Uranga, Angel M. ;
Valenzuela, Irene .
JOURNAL OF HIGH ENERGY PHYSICS, 2021, 2021 (03)
[10]   FINITE DISTANCE BETWEEN DISTINCT CALABI-YAU MANIFOLDS [J].
CANDELAS, P ;
GREEN, PS ;
HUBSCH, T .
PHYSICAL REVIEW LETTERS, 1989, 62 (17) :1956-1959