I am a final-year MPhys Theoretical Physics student at the University of York, specialising in the design and implementation of software for quantum networks and quantum key distribution. Currently researching the security analysis and simulation of entanglement-based quantum key distribution (QKD) protocols within the Quantum Communications group at the York Centre for Quantum Technologies. Skilled in high-performance computing and machine learning with a strong foundation in quantum science and technology. Interested in contributing to the development of secure and scalable quantum communication systems.
MPhys Theoretical Physics student at the University of York
- United Kingdom
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21:18
(UTC +01:00) - in/scott-n-lynn
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qkd-simulator
qkd-simulator PublicA modular, pipeline-based simulator for computing the secure key rate (SKR) of decoy-state BB84 quantum key distribution over a lossy fibre channel.
Python
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hybrid-mpi-sor-solver
hybrid-mpi-sor-solver PublicHigh-performance, hybrid-parallelized (MPI + OpenMP) Successive Over-Relaxation (SOR) solver, developed in modern Fortran
Fortran
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iDEA
iDEA PublicForked from iDEA-org/iDEA
interacting Dynamic Electrons Approach
Jupyter Notebook 1
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Tight-Binding-GNR-Simulation
Tight-Binding-GNR-Simulation PublicModelling AGNR and ZGNR (Graphene Nannoribbons) with Python to determine their electronic properties
Python
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