EquipmentTescan Vega Compact Scanning Electron Microscope (Benchtop SEM)
PEOPLE
- Professor
- School of Earth and Environment
- ProfessorSchool of Earth and Environment
I am interested in anything to do with fossils and palaeontology, and the application of fossils to understanding Earth history. My current research interests include the New Zealand geological histories and development of, and the human impacts on, modern estuaries and waterways that I investigate through microfossil and sediment records. Deeper in geological time I also research the evolution and ecology of Palaeozoic bryozoans and their response to changing ocean chemistry and palaeogeography. I have worked in Tasmania, the Canadian Arctic and throughout New Zealand and love any excuse to get out in the field.
Key palaeontological skills - New Zealand foraminifera and Palaeozoic bryozoan systematics.I am interested in anything to do with fossils and palaeontology, and the application of fossils to understanding Earth history. My current research interests include the New Zealand geological histories and development of, and the human impacts on, modern estuaries and waterways that I investigate through microfossil and sediment records. Deeper in geological time I also research the evolution and ecology of Palaeozoic bryozoans and their response to changing ocean chemistry and palaeogeography. I have worked in Tasmania, the Canadian Arctic and throughout New Zealand and love any excuse to get out in the field.
Key palaeontological skills - New Zealand foraminifera and Palaeozoic bryozoan systematics.- Faculty of Science
- Registered to supervise Master's/Doctoral students
- Lecturer
- School of Earth and Environment
- LecturerSchool of Earth and Environment
My research focuses on the magma plumbing systems beneath volcanoes. I am interested in how magmas are generated, where magma resides before eruption, and the conditions that lead to eruption. I use igneous petrology and volcanology to reconstruct past eruptions and unravel magmatic conditions. I apply modelling techniques to the composition of glass, minerals, and pumice to determine the pressure, temperature, and chemistry of magma storage. This information helps us understand modern volcanic unrest and builds towards better understanding of our geothermal and critical mineral resources.
In 2025, I was awarded the New Zealand Geochemistry Prize for my work on magma systems of the Taupō Volcanic Zone. Using rhyolite-MELTS geobarometry, I showed that some large caldera eruptions tap magma from multiple magma chambers spread through the crust.
Another aspect of my work focuses on using the composition of sedimentary rocks to understand the source of sediments both in modern environments, such as Whakaraupō | Lyttelton Harbour, and in ancient sedimentary systems, such as the Taranaki Basin.I welcome enquiries from prospective collaborators, particularly in igneous petrology of caldera magma systems, the Taupō Volcanic Zone, and applying geobarometry to magma systems worldwide.
My research focuses on the magma plumbing systems beneath volcanoes. I am interested in how magmas are generated, where magma resides before eruption, and the conditions that lead to eruption. I use igneous petrology and volcanology to reconstruct past eruptions and unravel magmatic conditions. I apply modelling techniques to the composition of glass, minerals, and pumice to determine the pressure, temperature, and chemistry of magma storage. This information helps us understand modern volcanic unrest and builds towards better understanding of our geothermal and critical mineral resources.
In 2025, I was awarded the New Zealand Geochemistry Prize for my work on magma systems of the Taupō Volcanic Zone. Using rhyolite-MELTS geobarometry, I showed that some large caldera eruptions tap magma from multiple magma chambers spread through the crust.
Another aspect of my work focuses on using the composition of sedimentary rocks to understand the source of sediments both in modern environments, such as Whakaraupō | Lyttelton Harbour, and in ancient sedimentary systems, such as the Taranaki Basin.I welcome enquiries from prospective collaborators, particularly in igneous petrology of caldera magma systems, the Taupō Volcanic Zone, and applying geobarometry to magma systems worldwide.
- Faculty of Science
- Registered to supervise Master's/Doctoral students
- 11 Sustainable Cities and Communities
- 13 Climate Action
- 15 Life on Land
- 14 Life Below Water
- 7 Affordable and Clean Energy
- 9 Industry, Innovation and Infrastructure
- Collaborative research projects
- Industry partnerships & innovation
- Outreach & community engagement
- Media enquiries
Fields of Research- Igneous and metamorphic petrology
- Volcanology
- Sedimentology
- Earth sciences
- Geology