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Atomic and Laser Physics
Credit: Jack Hobhouse

Dr Aonan Zhang

Oxford Quantum Institute Early Career Fellow

Research theme

  • Quantum information and computation
  • Quantum optics & ultra-cold matter

Sub department

  • Atomic and Laser Physics

Research groups

  • Quantum and optical technology
aonan.zhang@physics.ox.ac.uk
Clarendon Laboratory, room OQI
  • About
  • Publications

Direct characterization of quantum dynamics via generalized weak values

Science Advances American Association for the Advancement of Science (AAAS) 12:29 (2026) eaeb7304

Authors:

Liang Xu, Yue Pan, Hui Li, Ben Wang, Aonan Zhang, Ying Dong, Lijian Zhang

Abstract:

Weak values, emerging from weak measurements in pre- and postselection, exhibit complex-valued properties, enabling the direct characterization of quantum systems. However, conventional weak values do not account for system evolution, restricting their capability to capture quantum dynamical information. To overcome this limitation, we introduce the process weak value (PWV), which incorporates quantum evolution between observables during pre- and postselection. By establishing a connection between PWVs and the matrix elements of unitary operators, we develop a theoretical framework for the direct characterization of quantum processes. Our experimental validation encompasses single-photon and two-photon unitary processes, as well as non-Hermitian parity-time symmetric quantum processes. Compared to standard quantum process tomography, our method reduces the required bases for state preparation and measurements while circumventing complex reconstruction algorithms, enhancing efficiency and scalability. Our PWV formalism opens avenues for broader foundational investigations of weak measurements and enables efficient applications in characterizing sophisticated quantum processes.
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Improving the loss threshold for quantum advantage in photonic sensors by complete photon counting

ArXiv 2606.30761 (2026)

Authors:

Gerard J Machado, Yazeed K Alwehaibi, Guillaume Thekkadath, Zhenghao Li, Aonan Zhang, Shang Yu, Adriana E Lita, Richard P Mirin, Martin J Stevens, Juan P Torres, Raj B Patel, Ian A Walmsley
Details from ArXiV

Super-resolving frequency measurement with mode-selective quantum memory

Nature Sensors Springer Nature (2026) 1-9

Authors:

Shicheng Zhang, Aonan Zhang, Ilse Maillette de Buy Wenniger, Paul M Burdekin, Steven Sagona-Stophel, Anindya Rastogi, Sarah E Thomas, Ian A Walmsley

Abstract:

High-precision optical frequency measurement underpins modern science and technology, yet conventional spectroscopic techniques struggle to resolve sublinewidth spectral features. Here we introduce a platform for super-resolved frequency estimation based on a mode-selective atomic Raman quantum memory implemented in warm caesium vapour. By precisely engineering the light–matter interaction, the memory coherently stores the optimal temporal mode with high fidelity and retrieves it on demand, achieving mode crosstalk as low as 0.34%. To estimate the separation between two spectral lines, we experimentally measure the mean squared error of the frequency estimate, reaching a sensitivity of 1/20 of the linewidth and a (34 ± 4)-fold enhancement in precision over direct intensity measurements. This enhanced frequency resolution, combined with on-demand storage, retrieval and mode-conversion capabilities, establishes a pathway towards multifunctional memory-based time–frequency sensors and their integration within quantum networks.
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Passive Imaging with Quantum Advantage

(2026)

Authors:

Li Gong, Aonan Zhang, Madhura Ghosh Dastidar, Alexander Duplinskii, AI Lvovsky
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Machine learning of quantum data using optimal similarity measurements

ArXiv 2602.23501 (2026)

Authors:

Zhenghao Li, Hao Zhan, Shana H Winston, Ewan Mer, Zhenghao Yin, Shang Yu, Yazeed K Alwehaibi, Gerard J Machado, Dayne Marcus Lopena, Lijian Zhang, MS Kim, Aonan Zhang, Ian A Walmsley, Raj B Patel
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