About the Project Supervisory Team: Dr James Gates, Dr Chris Holmes, Bruno Moog Project Description We are looking for a PhD student to join our interdisciplinary team of students, postdocs, … Read More Read More
Categories:About the Project Quantum memories based on rare-earth ion dopants are arguably the best available, offering high efficiencies, multi-hour coherence times, and large bandwidth storage of entanglement. To achieve this, … Read More Read More
Categories:About the Project Quantum Communications (QC) are catalysing a paradigm shift in information transmission and the seamless connection of geographically distant entities. By harnessing the extraordinary quantum properties of photons … Read More Read More
Categories:About the Project The huge progress achieved in the manipulation of quantum systems is opening novel routes towards the generation of realistic quantum-based technology. Quantum sensors, in particular, exploit the … Read More Read More
Categories:About the Project The rich physics of spinor quantum gases with internal coupling makes them ideal platforms for emulating fundamental physical processes and for realizing atomtronic analogs of solid-state devices. … Read More Read More
Categories:About the Project This PhD project will examine single-photon imaging in a number of extreme environments, including thorough atmospheric obscurants, scattering media and in extreme low-light environments. Single-photon imaging has … Read More Read More
Categories:About the Project We are offering PhD studentships in physics, working on an optical lattice clock. The clock is based on strontium atoms, which are laser-cooled to a temperature of … Read More Read More
Category:About the Project The objective of this thesis is to realise a quantum-enabled synchronised radar network with multiple nodes. Such a radar network will allow an understanding of the presence … Read More Read More
Categories:About the Project Quantum computing offers efficient implementation of an important class of algorithms for which their classical counterparts suffer from an exponential growth of computational costs with system size. … Read More Read More
Categories:About the Project The terahertz band (100 GHz to 10 THz) lies in-between the frequency range of traditional electronics and optics. This band will form the basis for future 6G … Read More Read More
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