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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

The Isometries of Low-Energy Heterotic M-Theory

(2005)

Authors:

EJ Copeland, J Ellison, A Lukas, J Roberts

Moduli Stabilisation in Heterotic String Compactifications

(2005)

Authors:

Beatriz de Carlos, Sebastien Gurrieri, Andre Lukas, Andrei Micu

Stability of Branonium

INT J MOD PHYS A 20:15 (2005) 3423-3427

Authors:

J Ellison, A Lukas

Abstract:

We investigate the time-dependent behaviour of brane-antibrane orbital systems, mainly concentrating on the stability of the "Branonium" configuration.

Type IIB conifold transitions in cosmology

Physical Review D - Particles, Fields, Gravitation and Cosmology 71:6 (2005) 1-10

Authors:

A Lukas, E Palti, PM Saffin

Abstract:

We study four-dimensional low energy effective actions for conifold transitions of Calabi-Yau spaces in the context of IIB supergravity. The actions are constructed by examining the mass of D3-branes wrapped on collapsing/expanding three-cycles. We then study the cosmology of the conifold transition, including consequences for moduli stabilization, taking into account the effect of the additional states which become light at the transition. We find, the degree to which the additional states are excited is essential for whether the transition is dynamically realized. 漏 2005 The American Physical Society.

Classification and moduli K盲hler potentials of G2 manifolds

Physical Review D - Particles, Fields, Gravitation and Cosmology 71:4 (2005) 046004-1-046004-16

Authors:

AB Barrett, A Lukas

Abstract:

Compact manifolds of G2 holonomy may be constructed by dividing a seven-torus by some discrete symmetry group and then blowing up the singularities of the resulting orbifold. We classify possible group elements that may be used in this construction and use this classification to find a set of possible orbifold groups. We then derive the moduli K盲hler potential for M-theory on the resulting class of G2 manifolds with blown-up codimension four singularities. 漏 2005 The American Physical Society.

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