Zichuan Zhou
University College London, University College, London, University of Cambridge
About
Dr Zichuan Zhou received a BEng degree in Electronic and Electrical Engineering at UCL in 2018. He then received a MRes degree in Photonic and Electronic Systems at University of Cambridge and joined the Optical Networks Group at UCL in 2019. In 2024, he was awarded the PhD and became a Research Fellow within the Institute of Communications and Connected Systems (ICCS).
Dr Zichuan's research interests include:
Low latency data center network using ns-scale optical switch
High-capacity low latency optical access network architecture enabling future 6G application
Large-scale radio access network for 5/6G system enabled by optical frequency comb
Ultra-low phase noise millimeter-wave signal generation using photonics-assisted approach
High-capacity millimeter-wave transmission system enabled by advanced digital signal processing and modulation format
Employment
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University College London Senior Research Fellow2026 - Present
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University College, London Research Fellow2024 - 2025
Education
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University College, London Doctor of Philosophy2019 - 2024
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University of Cambridge Master of Research2018 - 2019
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University College, London Bachelor of Engineering2015 - 2018
Projects & Funding
Projects & funding information is unavailable.
Publications (43)
- Wide range tunable photonic frequency synthesiser with low and non-scaling phase noise Save
- Switching dynamics of DS-DBR laser under optical injection locking to achieve fast optical switching with enhanced coherence Save
- Clock and Carrier Synchronized Multi-Band Wireless Communications Enabled by Frequency Comb Dissemination in Radio Access Networks Save
- Carrier Phase Noise Impact on OFDM Performance at D-Band: Concepts and Experimental Assessment Save
- Dual optical frequency comb downconversion of D-band mm-wave signals Save
- Frequency-Division-Multiplexed PON Upstream enabled by Optical Frequency Comb Save
- Impact of Angle Misalignment on the Performance of a combined Optical and millimeter-wave Transceiver enabled by a pair of Optical Harmonically Locked Lasers Save
- Synchronous Clock and RF Carrier Transmission for Radio Access Network Fronthaul Save
- Synchronous Clock and RF Carrier Transmission for Radio Access Network Fronthaul Save
- Ultra-fast Wavelength Switching DS-DBR Laser with Enhanced Coherence Enabled by Optical Injection Locking Save