PhD Studentship: Theoretical Cosmology, Physics: Quantum Fields, Information, and Next-Generati[...] in Swansea

PhD Studentship: Theoretical Cosmology, Physics: Quantum Fields, Information, and Next-Generati[...] in Swansea

Swansea Full-Time 21805 - 22805 £ / year (est.) No working from home possible
Swansea University

At a Glance

  • Tasks: Explore quantum fields in cosmology and investigate early Universe physics.
  • Company: Leading university with a focus on innovative research in theoretical physics.
  • Benefits: Full tuition coverage, £21,805 stipend, and up to £1,000 for research costs.
  • Other info: Flexible start date and opportunities for interdisciplinary collaboration.
  • Why this job: Dive into groundbreaking research and contribute to our understanding of the cosmos.
  • Qualifications: Strong background in physics and mathematics, with a passion for theoretical research.

The predicted salary is between 21805 - 22805 £ per year.

This PhD project will investigate theoretical aspects of quantum field theory in cosmological spacetimes, with a particular focus on the physics of the early Universe. It will explore the behaviour of quantum fields in expanding backgrounds, including particle production, the dynamics of cosmological perturbations, and the emergence of effectively classical observables from primordial quantum fluctuations.

A central theme of the project will be the role of quantum information concepts in cosmology. Notions such as entanglement, quantum coherence, and information flow offer new perspectives on the quantum-to-classical transition, as well as on the structure and evolution of quantum correlations generated during the early Universe.

These questions will be addressed using frameworks from open quantum systems, decoherence, and non-equilibrium quantum dynamics, providing a unified description of quantum fields interacting with a cosmological environment. The project will further aim to connect these theoretical developments with potential observable signatures.

In particular, it will investigate how quantum information–theoretic features may be encoded in cosmological and astrophysical observables, and how they could be accessed through next‑generation probes, including gravitational‑wave observatories, measurements of the cosmic microwave background, and emerging concepts inspired by quantum sensing technologies.

The research will be primarily theoretical, relying on analytical methods from quantum field theory, general relativity, and cosmology, with interdisciplinary links to statistical physics and quantum information theory.

In exceptional circumstances, and subject to the discretion of the University and/or the relevant funding body, a deferral of offer may be granted to the next available enrolment period. Such deferral will typically not exceed a duration of three calendar months from the originally stipulated commencement date. Please note that only one deferral may be considered, and any such deferral is not guaranteed.

Applications may be submitted in Welsh and any application submitted in Welsh will be treated no less favourably than an application submitted in English. Please refer to the University’s Welsh Language Policy on Awarding Grants.

Funding Details: Covers full tuition, £21,805 stipend (2026/27), plus up to £1,000 yearly for research costs.

Closing Date: 31/07/2026

PhD Studentship: Theoretical Cosmology, Physics: Quantum Fields, Information, and Next-Generati[...] in Swansea employer: Swansea University

Swansea University is an exceptional employer, offering a vibrant and inclusive work culture that prioritises employee well-being and professional growth. With its stunning waterfront campus and commitment to research-led education, the university provides enriching career opportunities in a collaborative environment, making it an ideal place for those passionate about ecology and making a positive impact on the planet.

Swansea University

Contact Details:

Swansea University Recruitment Team

We think you need these skills to ace PhD Studentship: Theoretical Cosmology, Physics: Quantum Fields, Information, and Next-Generati[...] in Swansea

Quantum Field Theory
Cosmology
Analytical Methods
General Relativity
Statistical Physics
Quantum Information Theory
Entanglement