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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

Enumerating Calabi-Yau manifolds: placing bounds on the number of diffeomorphism classes in the Kreuzer-Skarke list

(2023)

Authors:

Aditi Chandra, Andrei Constantin, Cristofero S Fraser-Taliente, Thomas R Harvey, Andre Lukas

New Calabi-Yau manifolds from genetic algorithms

(2023)

Authors:

Per Berglund, Yang-Hui He, Elli Heyes, Edward Hirst, Vishnu Jejjala, Andre Lukas

Decoding nature with nature's tools: heterotic line bundle models of particle physics with genetic algorithms and quantum annealing

(2023)

Authors:

Steve Abel, Andrei Constantin, Thomas R Harvey, Andre Lukas, Luca A Nutricati

Symmetries of Calabi-Yau prepotentials with isomorphic flops

Journal of High Energy Physics Springer 2023:2 (2023) 175

Authors:

Andre Lukas, Fabian Ruehle

Abstract:

Calabi-Yau threefolds with infinitely many flops to isomorphic manifolds have an extended K盲hler cone made up from an infinite number of individual K盲hler cones. These cones are related by reflection symmetries across flop walls. We study the implications of this cone structure for mirror symmetry, by considering the instanton part of the prepotential in Calabi-Yau threefolds. We show that such isomorphic flops across facets of the K盲hler cone boundary give rise to symmetry groups isomorphic to Coxeter groups. In the dual Mori cone, non-flopping curve classes that are identified under these groups have the same Gopakumar-Vafa invariants. This leads to instanton prepotentials invariant under Coxeter groups, which we make manifest by introducing appropriate invariant functions. For some cases, these functions can be expressed in terms of theta functions whose appearance can be linked to an elliptic fibration structure of the Calabi-Yau manifold.

Flops for complete intersection Calabi-Yau threefolds

Journal of Geometry and Physics Elsevier 186 (2023) 104767

Authors:

Callum Brodie, Andrei Constantin, Andre Lukas, Fabian Ruehle

Abstract:

We study flops of Calabi-Yau threefolds realised as K盲hler-favourable complete intersections in products of projective spaces (CICYs) and identify two different types. The existence and the type of the flops can be recognised from the configuration matrix of the CICY, which also allows for constructing such examples. The first type corresponds to rows containing only 1s and 0s, while the second type corresponds to rows containing a single entry of 2, followed by 1s and 0s. We give explicit descriptions for the manifolds obtained after the flop and show that the second type of flop always leads to isomorphic manifolds, while the first type in general leads to non-isomorphic flops. The singular manifolds involved in the flops are determinantal varieties in the first case and more complicated in the second case. We also discuss manifolds admitting an infinite chain of flops and show how to identify these from the configuration matrix. Finally, we point out how to construct the divisor images and Picard group isomorphisms under both types of flops.

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