All-In-One Quantum Diamond Microscope for Rapid Sample Characterization.
POSTER
Abstract
Negatively-charged nitrogen-vacancy (NV) defects in diamond possess optically pumpable spin states with long coherence times at room temperature useful to building highly-sensitive and robust magnetometers. For NV ensembles, a variety of factors can impact magnetometry performance, e.g. strain or nitrogen concentration, and numerous distinct setups are often required to fully characterize a sample. We present an all-in-one apparatus which combines many optical detection schemes into one platform, shortening the time required for characterization. Additionally, this design allows us to switch between multiple modalities and wide-field imaging, allowing us to correlate sample-wide parameter variation with performance.
Presenters
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Connor Roncaioli
DEVCOM Army Research Laboratory
Authors
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Connor Roncaioli
DEVCOM Army Research Laboratory
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Donald P. Fahey
US Army Research Lab
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Matthew J Turner
Quantum Technology Center, University of Maryland, University of Maryland, University of Maryland, College Park
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Connor A Hart
University of Maryland, University of Maryland, College Park