I work across analogue quantum simulation, quantum sensing, and experimental tools. This page is a home for project summaries, visualisations, and research resources.
Atomic magnetometry
QEP 2.0 atomic magnetometer
Building and testing a prototype alkali-vapour magnetometer, with optical, magnetic, mechanical, and data-acquisition systems for sensitive measurements in Earth’s field.
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A*STAR Q.InC sensing research ↗
Radio-frequency sensing
NQR magnetometer
Designing laser, optomechanical, and electromagnetic subsystems for an NQR-based detector project aimed at border-screening applications.
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HTX CBRNE expertise ↗
Alkali vapour cells
Hybrid Optical Pumping of Dual-Atomic Vapours
Studying assumptions about spin-temperature equilibrium in hybrid vapour cells, with the goal of improving cell uniformity and magnetometer sensitivity.
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Experimental electronics
Low-noise magnetometry electronics
Building custom current sources and amplifiers as stable, low-noise references for atomic magnetometry experiments.
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Cold atoms · electromagnet design
Fields for ultracold experiments
Simulating bias and curvature coils, translating Mathematica designs into Julia, and developing clear visual tools for magnetic-field configurations.
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Radio astronomy
Building and testing a radio telescope
Improving a portable 21-cm radio telescope to characterise radio-frequency interference in Singapore and assess its use for teaching.
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Coming next
Quantum sensing and many-body dynamics
Future notes on atomic magnetometry, quantum information scrambling, non-equilibrium physics, and enhanced quantum metrology.
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