Schatz, Karolina P.
ORCID: https://orcid.org/0000-0002-5861-2574
(2026)
Experimental Development of a Polarisation-Entanglement System for Application in Real-World Quantum Communications.
PhD thesis, University of York.
Abstract
Quantum Key Distribution (QKD) is an emerging technology that enables secure data encryption by basing key generation on the transmission of quantum states rather than computational complexity, thereby anchoring security in the laws of physics and offering resilience against quantum computing attacks. Current research efforts focus on transitioning QKD from laboratory-based demonstrations to real-world deployment, thereby establishing it as a practical communication technology. Quantum entanglement plays a central role in QKD by enabling robust security assurance and providing a path towards scalable quantum networks.
This thesis presents a polarisation-entanglement system designed for operation in practical research scenarios, comprising state preparation from a commercial source, transmission, reception and data analysis. The system's capabilities are demonstrated through measurement of polarisation correlation visibility, violation of CHSH-type inequalities, and quantum state tomography, culminating in the generation of the first discrete-variable secret key generated within the Experimental Quantum Communication Group at the University of York.
Using the developed system, the integration of quantum communication into existing information infrastructure is experimentally investigated in two distinct scenarios. First, the coexistence of quantum and classical signals in the shared optical fibre is explored in the context of a White Rabbit time-distribution system, recovering entanglement visibilities above 96\% over co-propagation distances of up to 1~km. Second, the transmission of photon pairs from the entanglement source is demonstrated over a 224~km deployed submarine fibre link, connecting the UK and Ireland used for classical data traffic. Together, these efforts provide a versatile, robust research tool for future experimental studies of polarisation-based QKD and demonstrate the viability of integrating quantum communication into existing optical infrastructure, paving the way for practical QKD systems.
Metadata
| Supervisors: | Lucamarini, Marco |
|---|---|
| Keywords: | quantum key distribution, polarisation entanglement, QKD field deployment |
| Awarding institution: | University of York |
| Academic Units: | The University of York > School of Physics, Engineering and Technology (York) |
| Date Deposited: | 10 Sep 2026 13:53 |
| Last Modified: | 10 Sep 2026 13:53 |
| Open Archives Initiative ID (OAI ID): | oai:etheses.whiterose.ac.uk:39295 |
Download
Examined Thesis (PDF)
Filename: Schatz_207074110_ThesisDeposit_final.pdf
Licence:

This work is licensed under a Creative Commons Attribution NonCommercial NoDerivatives 4.0 International License
Export
Statistics
You do not need to contact us to get a copy of this thesis. Please use the 'Download' link(s) above to get a copy.
You can contact us about this thesis. If you need to make a general enquiry, please see the Contact us page.