Geometry and Physics of String Theory

Lead Research Organisation: King's College London
Department Name: Mathematics

Abstract

The two foundations of theoretical physics are Einstein's GeneralRelativity and the Standard Model of elementary particles. It isan outstanding problem, and an exciting challenge, to understandhow these two very successful theories can be given a unifieddescription. String Theory, or M-Theory as itsometimes called, is one of the most promising candidates for sucha unified theory. Many of the recent interesting developments inString Theory, have uncovered new and deep interconnectionsbetween Geometry and Physics. The most significant example is the anti de Sitter/Conformal Field Theory correspondence (AdS/CFT). Thiscorrespondence, also known as Maldacena's conjecture, states that aparticular type of geometry (comprising anti-de Sitter space-time)encodes the same physical information as a ConformalField Theory, which describes interacting particles in a highlysymmetric regime. This duality has been applied to a wide range ofgeometrical backgrounds, which have been linked to precise quantumfield theories, thereby providing new tools for a betterunderstanding of long-standing problems on particle physics, suchas quark confinement. Another area of String Theory, wheresophisticated geometrical tools play a crucial role is that ofcompactifications. String Theory in fact naturally live in 10 or11 dimensions, and one problem is how to deal with theextra-dimensions, in addition to the four space-time oneswhich we know. One idea is then to compactify the theory,which means ascribing to the remaining compact directions the roleof an internal symmetry of the physical theory. The objectiveof my proposed research is to study the interconnectionsbetween the geometry of String Theory and its physical implications. Ipropose to investigate the AdS/CFT correspondence and itsextensions, as well the problem of String Theory compactificationswith the two-fold aim of shedding light on fundamental problems ofM-Theory and making contact with the physical World.

Publications

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Alday L (2013) Localization on three-manifolds in Journal of High Energy Physics

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Cassani D (2013) Supersymmetry on curved spaces and superconformal anomalies in Journal of High Energy Physics

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Cassani D (2014) Supersymmetry in Lorentzian Curved Spaces and Holography in Communications in Mathematical Physics

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Gabella M (2013) $${\mathcal{N} = 2}$$ N = 2 Supersymmetric AdS4 Solutions of M-theory in Communications in Mathematical Physics

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Gaillard J (2011) The warped, resolved, deformed conifold gets flavoured in Nuclear Physics B

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Gaillard J (2011) Fivebranes and resolved deformed G 2 manifolds in Journal of High Energy Physics

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Martelli D (2010) Non-Kahler heterotic rotations

 
Description I have developed the understanding of aspects of the gauge/gravity duality in string theory. In particular, I have worked succesfully on geometrical aspects underpinning this duality. I have also obtained results in the context of supersymmetric quantum field theories.
Exploitation Route The results of my findings are available through peer reviewed scientific journals, and public electronic archives. The global scientific community can access these findings, and pursue the research avenues initiated therein.
Sectors Other