Winter Semester 2026/2027
September 10, 2026 – Prof. Dr. Pierre Lanari
University of Lausanne
High-speed metamorphism: Do mineral growth rates match the experiments?
Metamorphism is a fundamental geological process in which rocks are transformed by heat and pressure, resulting in the formation of new minerals and textures. This transformation occurs over a range of spatial and temporal scales and plays a central role in the geodynamic cycle. It shapes mountain ranges, drives crustal recycling and contributes to the formation of economically important resources. Metamorphism also induces dehydration and densification, processes that actively influence plate tectonics and are associated with rapid geological phenomena such as seismicity. But what controls the rate at which metamorphic reactions, particularly mineral transformations, proceed? While field-based petrological observations suggest timescales of hundreds of thousands to millions of years, experimental data often yield much shorter timescales – on the order of days to weeks. I will present a case study using data-driven approaches to unravel the evolving conditions and timescales of a specific lower crustal metamorphic reaction. I will show how advances in analytical techniques and the development of user-friendly software for big data analysis are crucial to answering the long-standing question of the rates of metamorphic processes in natural systems.
Host: Mona Lüder
October 28, 2026 – Welcome Colloquium
Host: David Bajnai
November 4, 2026 – Dr. Romina Achaga
Universidad Nacional del Centro de la Provincia de Buenos Aires
Host: Lisa Feist
Habilitation Colloquium – Attendance restricted according to faculty regulations.Not Eligible for Colloquium Signatures!
November 11, 2026 – Dr. S. Yoshi Maezumi
Max Planck Institute of Geoanthropology
The Anthropocene Perspective: Reconstructing Past Human Environment Interactions to Inform Future Sustainability
November 18, 2026 – Dr. Zhiyong Lin
University of Hamburg
Host: Vanessa Fichtner
November 25, 2026 – Dr. Veronica Peverelli
Trinity College Dublin
A dual role for deep geological fluids in shaping Earth’s habitability
The emergence and persistence of life on Earth are intimately connected to the deep and shallow volatile cycles, driven by the redistribution of fluids between Earth’s reservoirs. From the deep mantle to the shallow crust, fluids occur in diverse forms on Earth and play a fundamental role in most geological processes. The interplay between the subduction of volatiles into the mantle, the release of primordial and/or recycled volatile components from Earth’s deep reservoirs, and their transfer to the surface modulates Earth’s habitability throughout geological time. On the one hand, volatiles and their redistribution sustain microbial life even in some of Earth’s most extreme environments, maintain a suitable atmosphere for human life, and concentrate metals that are essential to technological development. On the other hand, the episodic release of volatiles through magmatic activity can alter the chemical composition of Earth’s atmosphere and oceans, creating short- or long-lived conditions that are inhospitable to life. I will present case studies illustrating the dual role of geological fluids and volatiles therein in sustaining or compromising different forms of life on Earth. I will discuss how constraining the role of Earth’s reservoirs in storing and releasing volatiles under evolving geodynamic regimes may improve our understanding of planetary habitability through geological time.
Host: M. Thereza G. Yogi
Eligible for Colloquium Signatures!
December 2, 2026 – Nikolauskolloquium
December 9, 2026 – Dr. Magdalena Hofmann
PICARRO
Host: Andreas Pack
December 16, 2026 – Assoc. Prof. Dr. Jenny Suckale
Stanford University
Is it possible to stabilize glaciers and should we try?
Climate change presents an unprecedented challenge because of its global reach, long timescales, and cascading risks. It is not confined to a region or a generation: it touches every part of the planet and will continue to shape life for centuries. Its interactions with natural and human systems amplify hazards—rising seas, extreme weather, disrupted food and water supplies, public-health stresses, and geopolitical instability. Simply describing these hazards, as current models often do, is no longer enough. We need a new generation of models that go beyond diagnosis to identify scientifically rigorous, technologically feasible, and socially acceptable options for reducing the risk of reaching tipping points that could irreversibly damage our climate system. One of these tipping points is the disintegration of the West Antarctic Ice Sheet, which is drained by gigantic outlet glaciers that are currently accelerating. In this talk, I will explore whether it is possible to stabilize glaciers by removing or freezing water underneath the ice to increase friction and slow glacial motion. I will discuss progress to date, open questions and risks.
Host: Andreas Pack
January 6, 2027 – Assoc. Prof. Dr. Paola Manzotti
Stockholm University
Host: Thomas Müller
January 13, 2027 – Dr. Olivia Barbee
Niels Bohr Institute, University of Copenhagen
Host: Johanna Kerch
January 20, 2027
There is no lecture scheduled yet for this date.
January 27, 2027 – Hans-Peter Grossart
Leibniz-Institut für Gewässerökologie und Binnenfischerei (IGB), Berlin
Host: Johann Holdt
February 3, 2027
There is no lecture scheduled yet for this date.
February 10, 2027
There is no lecture scheduled yet for this date.