Chloé Vernière
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View article: Entanglement-enhanced imaging through scattering media
Entanglement-enhanced imaging through scattering media Open
Scattering in complex media scrambles light, obscuring images and hindering applications ranging from astronomy to microscopy. While computational algorithms and wavefront shaping can, in principle, reverse this mixing by exploiting the ne…
View article: Accidental coincidences in camera-based high-dimensional entanglement certification
Accidental coincidences in camera-based high-dimensional entanglement certification Open
High-dimensional entangled states, such as spatially-entangled photon pairs produced by Spontaneous Parametric Down-Conversion (SPDC), are a key resource for quantum technologies. In recent years, camera-based coincidence counting approach…
View article: Non-classical optimization of entangled photons through complex media
Non-classical optimization of entangled photons through complex media Open
Optimization approaches are ubiquitous in physics. In optics, they are key to manipulating light through complex media, enabling applications ranging from imaging to photonic simulators. In most demonstrations, however, the optimization pr…
View article: Towards robust detection of entangled two-photon absorption
Towards robust detection of entangled two-photon absorption Open
Over the last 50 years entangled photon pairs have received attention for use in lowering the flux in two-photon absorption imaging and spectroscopy. Despite this, evidence for entangled two-photon absorption (ETPA) effects remain highly d…
View article: Quantifying high-dimensional spatial entanglement with a single-photon-sensitive time-stamping camera
Quantifying high-dimensional spatial entanglement with a single-photon-sensitive time-stamping camera Open
High-dimensional entanglement is a promising resource for quantum technologies. Being able to certify it for any quantum state is essential. However, to date, experimental entanglement certification methods are imperfect and leave some loo…
View article: Control of an Atomic Quadrupole Transition in a Phase-Stable Standing Wave
Control of an Atomic Quadrupole Transition in a Phase-Stable Standing Wave Open
Using a single calcium ion confined in a surface-electrode trap, we study the interaction of electric quadrupole transitions with a passively phase-stable optical standing wave field sourced by photonics integrated within the trap. We char…