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91探花
Theoretical physicists working at a blackboard collaboration pod in the Beecroft building.
Credit: Jack Hobhouse

Prof Andre Lukas

Professor of Theoretical Physics, Head of Theoretical Physics

Research theme

  • Fundamental particles and interactions
  • Fields, strings, and quantum dynamics

Sub department

  • Rudolf Peierls Centre for Theoretical Physics

Research groups

  • Particle theory
Andre.Lukas@physics.ox.ac.uk
Telephone: 01865 (2)73953
Rudolf Peierls Centre for Theoretical Physics, room 70.11
  • About
  • Publications

Stability walls in heterotic theories

JOURNAL OF HIGH ENERGY PHYSICS (2009) ARTN 026

Authors:

Lara B Anderson, James Gray, Andre Lukas, Burt Ovrut

An abundance of heterotic vacua

Journal of High Energy Physics 2008:12 (2008)

Authors:

M Gabella, YH He, A Lukas

Abstract:

We explicitly construct the largest dataset to date of heterotic vacua arising from stable vector bundles on Calabi-Yau threefolds. Focusing on elliptically fibered Calabi-Yau manifolds with spectral cover bundles, we show that the number of heterotic models with non-zero number of generations is finite. We classify these models according to the complex base of their Calabi-Yau threefold and to the unification gauge group that they preserve in four dimensions. This database of the order of 107 models, which includes potential Standard Model candidates, is subjected to some preliminary statistical analyses. The additional constraint that there should be three net generations of particles gives a dramatic reduction of the number of vacua. 漏 2008 SISSA.

M-theory on Calabi-Yau Five-Folds

(2008)

Authors:

Alexander S Haupt, Andre Lukas, KS Stelle

An Abundance of Heterotic Vacua

(2008)

Authors:

Maxime Gabella, Yang-Hui He, Andre Lukas

Monad bundles in heterotic string compactifications

Journal of High Energy Physics 2008:7 (2008)

Authors:

L Anderson, YH He, A Lukas

Abstract:

In this paper, we study positive monad vector bundles on complete intersection Calabi-Yau manifolds in the context of E 8 脳 E 8 heterotic string compactifications. We show that the class of such bundles, subject to the heterotic anomaly condition, is finite and consists of about 7000 models. We explain how to compute the complete particle spectrum for these models. In particular, we prove the absence of vector-like family anti-family pairs in all cases. We also verify a set of highly non-trivial necessary conditions for the stability of the bundles. A full stability proof will appear in a companion paper. A scan over all models shows that even a few rudimentary physical constraints reduces the number of viable models drastically.

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