16 citations · 40 across the 3 of their papers we have counts for
6 papers
Aberration control in quantitative widefield quantum microscopy
S. C. Scholten, I. O. Robertson, G. J. Abrahams +3
Widefield quantum microscopy based on nitrogen-vacancy (NV) centres in diamond has emerged as a powerful technique for quantitative mapping of magnetic fields with a sub-micron res…
Imaging current control of magnetization in FeGeTe with a widefield nitrogen-vacancy microscope
Islay O. Robertson, Cheng Tan, Sam C. Scholten +6
Van der Waals (vdW) magnets are appealing candidates for realising spintronic devices that exploit current control of magnetization (e.g. switching or domain wall motion), but so f…
Varied magnetic phases in a van der Waals easy-plane antiferromagnet revealed by nitrogen-vacancy center microscopy
A. J. Healey, S. Rahman, S. C. Scholten +7
Interest in van der Waals materials often stems from a desire to miniaturise existing technologies by exploiting their intrinsic layered structure to create near atomically-thin co…
Quantum microscopy with van der Waals heterostructures
A. J. Healey, S. C. Scholten, T. Yang +10
Quantum microscopes based on solid-state spin quantum sensors have recently emerged as powerful tools for probing material properties and physical processes in regimes not accessib…
An Integrated Widefield Probe for Practical Diamond Nitrogen-Vacancy Microscopy
G. J. Abrahams, S. C. Scholten, A. J. Healey +7
The widefield diamond nitrogen-vacancy (NV) microscope is a powerful instrument for imaging magnetic fields. However, a key limitation impeding its wider adoption is its complex op…
Widefield quantum microscopy with nitrogen-vacancy centers in diamond: strengths, limitations, and prospects
S. C. Scholten, A. J. Healey, I. O. Robertson +3
A dense layer of nitrogen-vacancy (NV) centers near the surface of a diamond can be interrogated in a widefield optical microscope to produce spatially resolved maps of local quant…