We report on nanometer magnetic imaging of two-dimensional current flow in bilayer graphene devices at room temperature. By combining dynamical modulation of the source-drain current with ac quantum sensing of a nitrogen-vacancy center in the diamond probe tip, we acquire magnetic field and current density maps with excellent sensitivities of 4.6 nT and 20 nA/µm, respectively. The spatial resolution is 50-100 nm. We introduce a set of methods for increasing the technique’s dynamic range and for mitigating undesired back-action of magnetometry operation (scanning tip, laser and microwave pulses) on the electronic transport. Finally, we show that our imaging technique is able to resolve small variations in the current flow pattern in response...
The magnetic fields generated by spins and currents provide a unique window into the physics of corr...
This thesis presents several experiments, generally aiming at visualising the ballistic and topologi...
© 2021 Scott Eric LillieMicroscopy based on the nitrogen-vacancy centre in diamond is an emerging te...
Nanoscale electronic transport gives rise to a number of intriguing physical phenomena that are acco...
We demonstrate two-dimensional mapping of current flow in graphene devices by using a single-spin sc...
Scanning probe techniques can be used to probe electronic properties at the nanoscale, to shed light...
The development of new scientific instruments often leads to the observation of new physical phenome...
A cooled scanning probe microscope (SPM) is an ideal tool to image electronic motion in graphene: th...
The development of new scientific instruments often leads to the observation of new physical phenome...
The electrical conductivity of a material can feature subtle, non-trivial, and spatially varying sig...
The electrical conductivity of a material can feature subtle, non-trivial, and spatially varying sig...
Quantum sensors based on spin defects in diamond have recently enabled detailed imaging of nanoscale...
175 pagesGraphene is a material consisting of a single layer of carbon atoms, with distinctive elect...
The magnetic fields generated by spins and currents provide a unique window into the physics of corr...
The application of imaging techniques based on ensembles of nitrogen-vacancy (N-V) sensors in diamon...
The magnetic fields generated by spins and currents provide a unique window into the physics of corr...
This thesis presents several experiments, generally aiming at visualising the ballistic and topologi...
© 2021 Scott Eric LillieMicroscopy based on the nitrogen-vacancy centre in diamond is an emerging te...
Nanoscale electronic transport gives rise to a number of intriguing physical phenomena that are acco...
We demonstrate two-dimensional mapping of current flow in graphene devices by using a single-spin sc...
Scanning probe techniques can be used to probe electronic properties at the nanoscale, to shed light...
The development of new scientific instruments often leads to the observation of new physical phenome...
A cooled scanning probe microscope (SPM) is an ideal tool to image electronic motion in graphene: th...
The development of new scientific instruments often leads to the observation of new physical phenome...
The electrical conductivity of a material can feature subtle, non-trivial, and spatially varying sig...
The electrical conductivity of a material can feature subtle, non-trivial, and spatially varying sig...
Quantum sensors based on spin defects in diamond have recently enabled detailed imaging of nanoscale...
175 pagesGraphene is a material consisting of a single layer of carbon atoms, with distinctive elect...
The magnetic fields generated by spins and currents provide a unique window into the physics of corr...
The application of imaging techniques based on ensembles of nitrogen-vacancy (N-V) sensors in diamon...
The magnetic fields generated by spins and currents provide a unique window into the physics of corr...
This thesis presents several experiments, generally aiming at visualising the ballistic and topologi...
© 2021 Scott Eric LillieMicroscopy based on the nitrogen-vacancy centre in diamond is an emerging te...