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Coventry University invites applications for a PhD student position in nonequilibrium collective dynamics of driven quantum systems. The project is theoretical with connections to cold atoms, photonic systems, and superconducting devices, within the Centre for Fluid and Complex Systems and the Statistical Physics Group.
Applicants should hold a minimum 2:1 degree in physics or applied mathematics, demonstrate strong analytical and numerical modelling skills, and meet English language
Eligibility: UK/International (including EU) graduates with the required entry requirements
Duration: Full-Time – between three and three and a half years fixed term
Interview date: Will be confirmed to shortlisted candidates
Collective behaviour in many-body systems is a central theme across physics, from classical nonequilibrium systems to strongly correlated quantum matter. In classical settings, systems composed of energy-consuming agents can exhibit striking emergent phenomena such as flocking, swarming, and spontaneous phase separation. These ideas have been particularly influential in the study of active and driven classical matter.
In quantum physics, interacting systems can form collective phases whose properties are intrinsically quantum and cannot be explained by classical theories. Recent advances in the control of open quantum systems—such as engineered dissipation, periodic driving, and measurement-based feedback—now allow energy to be supplied and manipulated at the level of individual quantum degrees of freedom. This opens new opportunities to explore whether concepts familiar from classical active and driven matter can be meaningfully extended to quantum systems. Building on recent proof-of-principle work by the Principal Investigator, this project will investigate nonequilibrium collective dynamics in driven quantum systems with genuinely quantum features.
The PhD student will carry out theoretical and computational research on interacting quantum systems driven far from equilibrium. Possible research directions include:
The project is primarily theoretical, with close connections to experimentally relevant platforms such as cold atoms, photonic systems, and superconducting quantum devices. The student will be based at the Centre for Fluid and Complex Systems and be part of the Statistical Physics Group.
Tuition fees and bursary
The successful candidate will receive comprehensive research training including technical, personal and professional skills. All researchers at Coventry University (from PhD to Professor) are part of the Doctoral and Researcher College, which provides support with high-quality training and career development activities.
PLUS
Applicants should hold a good undergraduate or master’s degree in physics, applied mathematics, or a related discipline. Relevant background may include:
The ideal candidate will be motivated, mathematically inclined, and interested in fundamental questions at the interface of nonequilibrium and quantum physics.