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91̽»¨
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

Heterotic Calabi-Yau Compactifications with Flux

(2013)

Authors:

Michael Klaput, Andre Lukas, Eirik Eik Svanes

Vacuum Varieties, Holomorphic Bundles and Complex Structure Stabilization in Heterotic Theories

(2013)

Authors:

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

All Complete Intersection Calabi-Yau Four-Folds

(2013)

Authors:

James Gray, Alexander S Haupt, Andre Lukas

All complete intersection Calabi-Yau four-folds

Journal of High Energy Physics 2013:7 (2013)

Authors:

J Gray, AS Haupt, A Lukas

Abstract:

We present an exhaustive, constructive, classification of the Calabi-Yau four-folds which can be described as complete intersections in products of projective spaces. A comprehensive list of 921,497 configuration matrices which represent all topologically distinct types of complete intersection Calabi-Yau four-folds is provided and can be downloaded here. The manifolds have non-negative Euler characteristics in the range 0 ≤ χ ≤ 2610. This data set will be of use in a wide range of physical and mathematical applications. Nearly all of these four-folds are elliptically fibered and are thus of interest for F-theory model building. © 2013 SISSA, Trieste, Italy.

Heterotic Calabi-Yau compactifications with flux

Journal of High Energy Physics 2013:9 (2013)

Authors:

M Klaput, A Lukas, EE Svanes

Abstract:

Compactifications of the heterotic string with NS flux normally require non Calabi-Yau internal spaces which are complex but no longer Kähler. We point out that this conclusion rests on the assumption of a maximally symmetric four-dimensional space-time and can be avoided if this assumption is relaxed. Specifically, it is shown that an internal Calabi-Yau manifold is consistent with the presence of NS flux provided four-dimensional space-time is taken to be a domain wall. These Calabi-Yau domain wall solutions can still be associated with a covariant four-dimensional N = 1 supergravity. In this four-dimensional context, the domain wall arises as the "simplest" solution to the effective supergravity due to the presence of a flux potential with a runaway direction. Our main message is that NS flux is a legitimate ingredient for moduli stabilisation in heterotic Calabi-Yau models. Ultimately, the success of such models depends on the ability to stabilise the runaway direction and thereby "lift" the domain wall to a maximally supersymmetric vacuum. © 2013 SISSA, Trieste, Italy.

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