Current Jobs
Informal Queries
- For informal queries, please contact Michal Kreps (Associate Professor) at M.Kreps@warwick.ac.uk.
Flexible Working
- We welcome applications from candidates seeking part-time employment (ideally minimum 0.8 FTE) or other flexible working basis (e.g. job share), despite the position being advertised as full-time. This supports our commitment to providing and supporting an inclusive culture where individuals are valued, respected and treated equally.
This is an exciting opportunity to join the Elementary Particle Physics group within the Department of Physics at the 天美传媒.
We are seeking to appoint a Research Fellow to undertake research in the LHCb experiment, specifically to contribute to our programme of LHCb data analysis and work on maintenance and operation of the vertex locator subdetector or development of particle identification detectors for LHCb Upgrade 2. Contributions to LHCb data processing and simulation are also possible.
About You
We are looking for someone with a PhD in experimental particle physics or another relevant subject, and a proven track record of research in instrumentation and/or data analysis. Experience in software and modern data analysis techniques would be valuable for the role, as would good working knowledge of C++ and Python.
Candidates should have excellent communication and collaborative working skills, as well as demonstrated experience of planning and time management to deliver research goals effectively.
For details on the experience and skills required, please refer to the job description attached as a PDF below.
PhD Status
If you are near submission of your PhD, or have not yet had it conferred, any offers of employment will be made at Research Assistant level, at the highest spinal point of pay grade 5 (拢34,610 per annum).
Upon receipt of evidence confirming the successful award of your PhD, you will be promoted to Research Fellow, at the lowest spinal point of grade 6 (拢35,608 per annum).
Informal Queries
- For informal queries, please contact Geetha Balakrishnan (Professor - Research Focussed) at G.Balakrishnan@warwick.ac.uk.
This is an exciting opportunity to join the Condensed Matter Physics group within the Department of Physics at the 天美传媒.
We are seeking to appoint a Research Fellow to join a new project on 鈥淎tomically thin moir茅 materials for low-energy electronics鈥, a Major Research Initiative supported by the . This five-year collaboration integrates materials growth, advanced microscopy and spectroscopy, nanoelectronic device fabrication, and machine-learning-accelerated theory, drawing on complementary strengths across both universities. We are investigating the following research areas:
- Moir茅 metamaterials - controlling electronic, and topological structures in moir茅 systems.
- Tuneable quantum phases - exploring superconducting, ferroelectric, and correlated states in engineered heterostructures.
- ML-accelerated modelling - developing multiscale simulations for moir茅 and 2D systems.
- Low-energy device prototypes – building and testing devices using cleanroom and cryogenic platforms.
The position advertised here focuses on the production of high-quality single crystals of a wide range of 2D and layered materials including transition metal dichalcogenides and other low dimensional materials. These will include magnets, superconductors and topological materials. The crystals will be grown using various techniques such as the Bridgman, flux growth and chemical vapour transport techniques.
In addition to crystal growth, the work will also involve characterisation of the crystals produced through measurements of their structural, magnetic, transport, and other properties. Extensive laboratory based powder and single crystal x-ray diffraction work, as well as the use of advanced microscopy techniques will be required. The work may also involve the fabrication of two-dimensional heterostructures and devices using the single crystals obtained. There may be scope for taking part in experiments at international facilities using neutron and x-ray scattering, muon spectroscopy and Angle Resolved Photoelectron Spectroscopy (ARPES).