An Effective Description of the Landscape - I
arXiv:0812.0369 · doi:10.1088/1126-6708/2009/01/056
Abstract
We study under what conditions massive fields can be "frozen" rather than integrated out in certain four dimensional theories with global or local N=1 supersymmetry. We focus on models without gauge fields, admitting a superpotential of the form W = W0(H) + epsilon W1(H,L), with epsilon << 1, where H and L schematically denote the heavy and light chiral superfields. We find that the fields H can always be frozen to constant values H0, if they approximately correspond to supersymmetric solutions along the H directions, independently of the form of the Kahler potential K for H and L, provided K is sufficiently regular. In supergravity W0 is required to be of order epsilon at the vacuum to ensure a mass hierarchy between H and L. The backreaction induced by the breaking of supersymmetry on the heavy fields is always negligible, leading to suppressed F^H--terms. For factorizable Kahler potentials W0 can instead be generic. Our results imply that the common way complex structure and dilaton moduli are stabilized, as in Phys. Rev. D 68 (2003) 046005 by Kachru et al., for instance, is reliable to a very good accuracy, provided W0 is small enough.
20 pages. v2: one comment added in the introduction, minor improvements, typos fixed. Version to appear in JHEP
References in corpus (11)
- The Anthropic Landscape of String Theory
- Locally stable non-supersymmetric Minkowski vacua in supergravity
- de Sitter vacua in no-scale supergravities and Calabi-Yau string models
- The Ubiquitous Throat
- Flavor and CP conserving moduli mediated SUSY breaking in flux compactification
- Globally and locally supersymmetric effective theories for light fields
- Remark on integrating out heavy moduli in flux compactification
- F-term uplifting and moduli stabilization consistent with Kahler invariance
- F-term uplifting and the supersymmetric integration of heavy moduli
- Consistent Decoupling of Heavy Scalars and Moduli in N=1 Supergravity
- An Effective Description of the Landscape - II
Cited by in corpus (26)
- SUSY Breaking in Local String/F-Theory Models
- Mass hierarchies and non-decoupling in multi-scalar field dynamics
- On the importance of heavy fields during inflation
- A SUSY GUT of Flavour with S4 x SU(5) to NLO
- A sufficient condition for de Sitter vacua in type IIB string theory
- What can break the Wandzura--Wilczek relation?
- A Note on the Magnitude of the Flux Superpotential
- Stabilizing All Kahler Moduli in Type IIB Orientifolds
- LVS de Sitter Vacua are probably in the Swampland
- Constructing de Sitter vacua in no-scale string models without uplifting
- De Sitter Vacua from Non-perturbative Flux Compactifications
- Globally and locally supersymmetric effective theories for light fields
- Physical Vacua in IIB Compactifications with a Single Kaehler Modulus
- An Effective Description of the Landscape - II
- Inflation with racetrack superpotential and matter field
- Perturbative Stability along the Supersymmetric Directions of the Landscape
- Universal Properties of Type IIB and F-theory Flux Compactifications at Large Complex Structure
- On the Effective Description of Large Volume Compactifications
- Towards a complete mass spectrum of type-IIB flux vacua at large complex structure
- Universal Class of Type-IIB Flux Vacua with Analytic Mass Spectrum
- Inflation in Random Landscapes with two energy scales
- Moduli Stabilisation in Heterotic Models with Standard Embedding
- A new class of de Sitter vacua in String Theory Compactifications
- Light field integration in SUGRA theories
- Effects of heavy modes on vacuum stability in supersymmetric theories
- Dynamics of Moduli and Gaugino Condensates in an Expanding Universe