10 quantum-physics-"https:"-"https:"-"https:"-"M.V" research jobs at DURHAM UNIVERSITY
Sort by
Refine Your Search
-
Listed
-
Field
-
algorithms for entanglement distribution in quantum networks. The purpose of the role is to contribute to the project "Utility Optimization in Quantum Networks: Algorithm Design and Analysis", working with Dr
-
of atomic, molecular and optical (AMO) physics within the Durham Quantum Light and Matter group. The position is funded by UK Research and Innovation (UKRI) and the post holder will work directly with Dr
-
support to a range of experimental research projects in the field of atomic, molecular and optical physics within the Durham Quantum Light and Matter group. The position is associated with a new five-year
-
on the design and performance analysis of resource allocation algorithms for entanglement distribution in quantum networks. The purpose of the role is to contribute to the project "Utility Optimization
-
Assistant to pursue experimental research in the field of atomic, molecular and optical (AMO) physics within the Durham Quantum Light and Matter group. The position is funded by UK Research and Innovation
-
position is available to provide high-level technical support to a range of experimental research projects in the field of atomic, molecular and optical physics within the Durham Quantum Light and Matter
-
to cyber security, including but not limited to embedded/hardware security, security of AI systems, (post-quantum) cryptography, quantum algorithms, confidential computing/trusted execution
-
, and workshops. We aim to provide a supportive and friendly environment with a strong sense of community. The Department currently has 116 permanent members of staff, following a process of significant
-
a PhD in Physical Sciences or a closely related field, and you will have a background in crystallisation and solid state characterisation. Knowledge of databases, and python coding is a must. The key
-
key challenges relating to the radio channel and system design. Challenge 1: to design wireless communication systems, it is paramount to have a verifiable model of the physical propagation channel by