Sparticle Spectra and LHC Signatures for Large Volume String Compactifications
arXiv:0704.3403 · doi:10.1088/1126-6708/2007/08/061
Abstract
We study the supersymmetric particle spectra and LHC collider observables for the large-volume string models with a fundamental scale of 10^{11} GeV that arise in moduli-fixed string compactifications with branes and fluxes. The presence of magnetic fluxes on the brane world volume, required for chirality, perturb the soft terms away from those previously computed in the dilute-flux limit. We use the difference in high-scale gauge couplings to estimate the magnitude of this perturbation and study the potential effects of the magnetic fluxes by generating many random spectra with the soft terms perturbed around the dilute flux limit. Even with a 40% variation in the high-scale soft terms the low-energy spectra take a clear and predictive form. The resulting spectra are broadly similar to those arising on the SPS1a slope, but more degenerate. In their minimal version the models predict the ratios of gaugino masses to be M_1 : M_2 : M_3=(1.5 - 2) : 2 : 6, different to both mSUGRA and mirage mediation. Among the scalars, the squarks tend to be lighter and the sleptons heavier than for comparable mSUGRA models. We generate 10 fb^{-1} of sample LHC data for the random spectra in order to study the range of collider phenomenology that can occur. We perform a detailed mass reconstruction on one example large-volume string model spectrum. 100 fb^{-1} of integrated luminosity is sufficient to discriminate the model from mSUGRA and aspects of the sparticle spectrum can be accurately reconstructed.
42 pages, 21 figures. Added references and discussion for section 3. Slight changes in the text
References in corpus (9)
- Four-dimensional String Compactifications with D-Branes, Orientifolds and Fluxes
- Muon g-2: Review of Theory and Experiment
- Progress in D-brane model building
- Roulette Inflation with Kähler Moduli and their Axions
- Astrophysical and Cosmological Implications of Large Volume String Compactifications
- Explaining the Electroweak Scale and Stabilizing Moduli in M Theory
- TeV Scale Mirage Mediation and Natural Little SUSY Hierarchy
- Moduli Stabilisation and Applications in IIB String Theory
- The Neutrino Suppression Scale from Large Volumes
Cited by in corpus (13)
- SUSY Breaking in Local String/F-Theory Models
- Moduli Stabilisation versus Chirality for MSSM like Type IIB Orientifolds
- Systematics of String Loop Corrections in Type IIB Calabi-Yau Flux Compactifications
- The LHC String Hunter's Companion
- Continuous Global Symmetries and Hyperweak Interactions in String Compactifications
- The Landscape of Sparticle Mass Hierarchies and Their Signature Space at the LHC
- Mirror Mediation
- Global Fits of the Large Volume String Scenario to WMAP5 and Other Indirect Constraints Using Markov Chain Monte Carlo
- Unravelling Strings at the LHC
- String GUT Scenarios with Stabilised Moduli
- The Supermembrane with Central Charges on a G2 Manifold
- Topology from Cosmology
- Recent Trends in Superstring Phenomenology