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My research: One of the key (but not obvious) properties of hollow core fibres is their insensitivity to environmental changes (e.g. temperature). I have introduced this topic in my Department in 2013 and I have been dealing with it ever since. Currently, it forms a flagship topic of my research. Currently, it consists of four distinct research streams:
Fundamental Fibre properties: In collaboration with our Fibre Design group, I investigate novel fibre designs that lead to improved thermal stability.
New approaches to low or zero thermal sensitivity: I look for alternative methods, e.g., change of glass composition, engineering of fibre coating, etc.
Demonstration of low thermal sensitivity applications: In collaboration with many external partners, I demonstrate advantages of using hollow core fibres, potentially enabling new emerging technologies, e.g., laser stabilization for seismic sensing which I am working on with the National Physical Laboratory, laser calibration for LIDARs (used, e.g., as ‘eyes’ for self-driven cars) which I am working on with API Sensors Ltd., or optically-switched Data Centre networks (in collaboration with the University College London).
Gas dynamics in gas-filled Hollow Core Fibres: We use precise measurement techniques that we have developed for characterization of very low thermal changes in hollow core fibres to measure other important phenomena in these fibres. This includes the dynamics of filling these fibres with gases, which is relevant for sensors (e.g., for breath analysis) and reference gas cells (for metrology). This is in collaboration with Dr. Natalie Wheeler from the ORC.
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Ailing Zhong, Eric Numkam Fokoua, Meng Ding,Daniel Dousek,Dmytro Suslov, Stanislav Zvanovec,Francesco Poletti,Radan Slavik,Matej Komanec
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IEEE Journal of Selected Topics in Quantum Electronicsno. 99 (2024): 1-11
arxiv(2024)
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Quantum Technology: Driving Commercialisation of an Enabling Science III (2023)
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2023 OPTICAL FIBER COMMUNICATIONS CONFERENCE AND EXHIBITION, OFCpp.1-3, (2023)
OPTICS LETTERSno. 10 (2023): 2772-2772
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2023 International Topical Meeting on Microwave Photonics (MWP)pp.1-2, (2023)
ICTONpp.1-3, (2023)
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