Durham Physics

Durham Physics This is the official page for the Department of Physics at Durham University, UK.

We were delighted to be able to invite all our students and staff to tune in to watch Professor Halzen receive this awar...
06/10/2026

We were delighted to be able to invite all our students and staff to tune in to watch Professor Halzen receive this award - we had the livestream of the presentation set up on a big screen this morning. Many congratulations to Professor Halzen, whom we were delighted and honoured to host when he delivered our 2025 Grubb Parsons Lecture, part of our Major Public Lecture Series, on the subject of 'ICECUBE: The Under-the-Ice Neutrino Observatory in Antarctica, Opening a New Window on the Universe from the South Pole.'

BREAKING NEWS
The Royal Swedish Academy of Sciences has decided to award the 2026 Nobel Prize in Physics to Francis Halzen “for decisive contributions to the IceCube Neutrino Observatory and the discovery of high-energy neutrinos of astrophysical origin.”

Francis Halzen realised that ice at the South Pole could be used to track particles known as neutrinos. His vision and scientific leadership have been fundamental for the IceCube Neutrino Observatory – a cubic kilometre of ice that is equipped with light sensors. Using IceCube, researchers can capture neutrinos from extremely energy-rich processes in the distant universe.

Neutrinos are everywhere, but they do not make themselves known. They pass all the way through the Earth and through our bodies without us noticing. Very rarely, a single neutrino will interact with an atomic nucleus, which makes it possible for someone with the right equipment to discover them.

Scientists have long known that the cosmos contains natural particle accelerators, which fire out particles with energies up to a million times more than can be achieved in laboratories on Earth. Much about these sources is mysterious: what are they, where are they, and what are the main processes inside them?

Neutrinos with extremely high energies are created in the same environments as other types of particles. However, unlike other particles, neutrinos reach us without changing direction or losing energy. This means they can provide information that is not available in any other way.

Francis Halzen first presented his vision for capturing neutrinos at the South Pole in 1988. When a neutrino collides with an atomic nucleus, it produces a flash of light that can be tracked by sensors in the clear glacial ice. The South Pole’s ice has many advantages, as it is free from various types of interference and the area is geologically stable, with no earthquakes. Halzen and his idea soon gained the support of other researchers and, just a few years later, preliminary testing was conducted on sensors in ice.

Cosmic neutrinos with extremely high energies are very rare, so an enormous volume of ice is needed to observe an adequate number of collisions. IceCube covers an entire cubic kilometre and was finished in 2011. Researchers soon discovered the first high-energy neutrinos and, a few years later, could publish their discovery of neutrinos that must originate far outside our solar system. The search for the universe’s neutrino sources could begin in earnest.

The neutrino interactions that are continuously collected by IceCube will provide researchers with novel knowledge about the violent settings in which high-energy neutrinos can be created – and could even reveal previously unknown cosmic phenomena.

Learn more
Press release: https://bit.ly/4xYId01
Popular information: https://bit.ly/3T69GgT
Advanced information: https://bit.ly/46V5owe

01/10/2026

Our Durham Physics researchers are part of a team behind one of the largest cosmological datasets ever created.

Generated from simulations run on the COSMA supercomputer, hosted on behalf of the UK's DiRAC High-performance computing Facility, the 2.5-petabyte FLAMINGO dataset helps researchers explore how the Universe evolves.

Discover more 👉 https://brnw.ch/21x64a8

30/09/2026

From furthering our understanding of the Universe to improving treatments for disease, Durham University is at the forefront of high-performance computing (HPC) and AI 💻

We host some of the UK's most powerful scientific supercomputers, COSMA, Bede and Hamilton, supporting researchers from across the UK and around the world. Through large-scale simulations, advanced data analysis and machine learning, we enable discoveries that are transforming research and learning.

Read more: https://brnw.ch/21x60Pv

29/09/2026

We’re back with more of our Explore the Rochester series, giving you an insight into our home here in Durham, our superb laboratories and the work that goes on in them.

We’re briefly going to reintroduce you to Ifan, and his Atoms, Lasers and Magnets labs, but this time Dr Danielle Pizzey shows us inside the lab where she uses laser beams to study how they interact with atoms.

As the laser beams pass through the atoms they absorb the light. In this lab atoms can be placed in a magnetic field in order to produce atomic optical filters, and they can teach us a lot about the sun, its dynamics and magnetic field.

Fascinating stuff!

24/09/2026
Between 15th and 17th September, the Ogden Centre for Fundamental Physics at Durham University hosted over 50 researcher...
24/09/2026

Between 15th and 17th September, the Ogden Centre for Fundamental Physics at Durham University hosted over 50 researchers and experts from around the world for the international workshop, "New Frontiers in Quantum-Enhanced Sensing and Metrology."

Quantum sensors are already transforming how we measure the world, with current devices being developed for navigation in GPS-denied environments, probing the inner workings of biological cells, and testing the fundamental laws of physics. However, this event focused on how we move beyond these early successes to build next-generation devices that exploit quantum mechanics to its fullest extent.

Read the full story here:
https://www.durham.ac.uk/departments/academic/physics/news/new-frontiers-in-quantum-enhanced-sensing-and-metrology/

24/09/2026

Power delivered by light ⚡

Researchers from our Centre for Advanced Instrumentation are partnering with Scalable Laser and University of Glasgow on LIVINGSTON - a £5.3m project funded by the Advanced Research and Invention Agency (ARIA) to develop laser power beaming technology that could provide continuous power to high-altitude aircraft.

Find out more 👉 https://brnw.ch/21x5TYP

📣 Ariadna Calcines Rosario receives TechWomen100 Award! 📣👏👏👏👏👏Ariadna Calcines Rosario, Associate Professor at the Centr...
17/09/2026

📣 Ariadna Calcines Rosario receives TechWomen100 Award! 📣
👏👏👏👏👏

Ariadna Calcines Rosario, Associate Professor at the Centre for Advanced Instrumentation (CfAI) in the Department of Physics, has been selected as a winner in WeAreTechWomen’s TechWomen100 Awards 2026.

These awards celebrate emerging talent of Women in the Tech sector. The 2026 TechWomen100 winners showcase remarkable women working across a wide range of technology roles, including AI, cyber security, software engineering, data and product development. This year’s winners represent organisations including Amazon, Accenture, Lloyds Banking Group, Morgan Stanley, IBM, BT, Adobe and UBS, as well as universities, public-sector bodies, growing businesses and community organisations.

Ariadna has received this award for her research on image slicers. She is currently working on the space qualification of the image slicer technology for applications in the Extreme Ultra-Violet regime for the next generation of solar space missions.

The award ceremony will take place in Mansion House in London, on the 16th of October.

Many congratulations to Ariadna!

The Prosecco was perfectly chilled as we gathered yesterday to celebrate the winners of this year’s Physics Department A...
16/09/2026

The Prosecco was perfectly chilled as we gathered yesterday to celebrate the winners of this year’s Physics Department Awards for Excellence.

The annual awards recognise the outstanding achievements and contributions of colleagues and postgraduate students across the Department.

Nominated anonymously by their peers, the recipients represent excellence in research, teaching, professional support, and service to our community.

The event also featured a series of engaging science talks, before concluding with the presentation of the awards and a celebration of the talent, dedication, and collaborative spirit that make our Physics Department such a success.

We’re delighted to announce a forthcoming major public lecture, and it’s free to attend. This is part of our Major Lectu...
15/09/2026

We’re delighted to announce a forthcoming major public lecture, and it’s free to attend. This is part of our Major Lecture Series at Durham, a department tradition of providing major public talks delivered by renowned experts from institutions and organisations around the world. You can find out more about the series at https://www.durham.ac.uk/departments/academic/physics/major-lecture-series/

This year is a little different however as we also have a panel discussion with our guest speaker Brother Guy Consolmagno, Director Emeritus of the Vatican Observatory, the evening before. So on Tuesday 13 October from 5.30-6.30pm join us for 'Would you baptize an extraterrestrial? ..and other questions from the astronomers inbox at the Vatican Observatory' in the Francis Thompson Room, Ushaw College, Woodland Road, Ushaw Moor, DH7 7DW. Pre-discussion refreshments from 5pm.

Then do join us on Wednesday 14 October for the 2026/27 Temple Chevalier Lecture, titled 'Astronomy, God, and the Search for Elegance'. This lecture will be delivered by Brother Guy Consolmagno at 4.30pm in the Applebey Lecture Theatre (Room W102) in the Department of Geography building, South Road, Durham DH1 3LE

Scientific theories must do more than just satisfy the data; they must do so in a mathematically "elegant" way. Kepler, Maxwell and Einstein are examples of scientists who found a sense of aesthetic "rightness" directed their scientific intuition to theories they could express rationally, mathematically, leading to deeper insights about nature. We'll examine examples of astronomical images of the stars and planets, going from an emotional appreciation of their beauty to an understanding that satisfies reason as well. Ultimately, this link between "elegance" and rational truth has profound theological implications.

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