Publication

Stand-alone vacuum cell for compact ultracold quantum technologies
Applied Physics Letters 119, 124002 (2021)
Compact vacuum systems are key enabling components for cold atom technologies, facilitating extremely accurate sensing applications. …
Towards a compact, optically interrogated, cold-atom microwave clock
Advanced Optical Technologies 9, 297–303 (2020)
A compact platform for cold atoms opens a range of exciting possibilities for portable, robust and accessible quantum sensors. In this …
Laser cooling in a chip-scale platform
Applied Physics Letters 117, 054001 (2020)
Chip-scale atomic devices built around micro-fabricated alkali vapor cells are at the forefront of compact metrology and atomic …
Cold-atom clock based on a diffractive optic
Optics Express 27, 38359 (2019)
Towards a compact atomic clock based on coherent population trapping and the grating magneto-optical trap
Optical, Opto-Atomic, and Entanglement-Enhanced Precision Metrology 82 (2019)
Raman-Ramsey CPT with a grating magneto-optical trap
2018 European Frequency and Time Forum (EFTF) 61–64 (2018)
Grating chips for quantum technologies
Scientific Reports 7, 384 (2017)
We have laser cooled 3*10^6 87Rb atoms to 3μK in a micro-fabricated grating magneto-optical trap (GMOT), enabling future …
Design and fabrication of diffractive atom chips for laser cooling and trapping
Applied Physics B 122, 172 (2016)
Utilising diffractive optics towards a compact, cold atom clock
2016 European Frequency and Time Forum (EFTF) 1–2 (2016)
Phase-space properties of magneto-optical traps utilising micro-fabricated gratings
Optics Express 23, 8948 (2015)