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2020 Differential Geometry Seminars

School of Mathematical Sciences – The University of Adelaide.

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2021 Differential Geometry Seminars

School of Mathematical Sciences – The University of Adelaide.

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A symposium celebrating 25 years of the Institute for Geometry and Its Applications

Barr Smith Library

A University Research Centre, the Institute for Geometry and its Applications (IGA) was founded on the 7th of November 1996, in recognition of the strong group of researchers in geometry and its applications at Adelaide, with its inaugural director being Professor Michael Eastwood (Adelaide).

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2022 Differential Geometry Seminars

School of Mathematical Sciences – The University of Adelaide.

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2023 Differential Geometry Seminars

School of Mathematical Sciences – The University of Adelaide.

[Read more about 2023 Differential Geometry Seminars]

Differential Geometry Seminar: Reconciling dichotomies in holomorphic dynamics

I will describe recent joint work with Leandro Arosio (University of Rome, Tor Vergata) in holomorphic dynamics.

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Differential Geometry Seminar: A higher index theorem on finite-volume locally symmetric spaces

Let G be a (connected, real, semisimple, real rank one) Lie group, and K a maximal compact subgroup. Let Gamma be a torsion-free, discrete subgroup of G.

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Differential Geometry Seminar: Global Stability of Spacetimes with Supersymmetric Compactifications

Compact spaces with special holonomy, such as Calabi-Yau manifolds, play an important role in supergravity and string theory.

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Differential Geometry Seminar: Killing tensors on complex projective space

The Killing tensors on the round sphere are well understood. In particular, these are finite-dimensional vector spaces with very nice formulae for their dimensions.

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Differential Geometry Seminar: Killing tensors on symmetric spaces

I will present some recent results on the structure of the algebra of Killing tensors on Riemannian symmetric spaces. The fundamental question is whether any Killing tensor field on a Riemannian symmetric space is a polynomial in (a symmetric product of) Killing vector fields.

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