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Wide-field strain imaging with preferentially aligned nitrogen-vacancy centers in polycrystalline diamond
by
Trusheim, Matthew E
, Englund, Dirk
in
Crystal structure
/ Field of view
/ Magnetic resonance imaging
/ nanoscale sensing
/ nitrogen-vacancy center
/ Physics
/ Polycrystalline diamond
/ Polycrystals
/ strain imaging
/ Vacancies
2016
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Wide-field strain imaging with preferentially aligned nitrogen-vacancy centers in polycrystalline diamond
by
Trusheim, Matthew E
, Englund, Dirk
in
Crystal structure
/ Field of view
/ Magnetic resonance imaging
/ nanoscale sensing
/ nitrogen-vacancy center
/ Physics
/ Polycrystalline diamond
/ Polycrystals
/ strain imaging
/ Vacancies
2016
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Wide-field strain imaging with preferentially aligned nitrogen-vacancy centers in polycrystalline diamond
by
Trusheim, Matthew E
, Englund, Dirk
in
Crystal structure
/ Field of view
/ Magnetic resonance imaging
/ nanoscale sensing
/ nitrogen-vacancy center
/ Physics
/ Polycrystalline diamond
/ Polycrystals
/ strain imaging
/ Vacancies
2016
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Wide-field strain imaging with preferentially aligned nitrogen-vacancy centers in polycrystalline diamond
Journal Article
Wide-field strain imaging with preferentially aligned nitrogen-vacancy centers in polycrystalline diamond
2016
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Overview
We report on wide-field optically detected magnetic resonance imaging of nitrogen-vacancy centers (NVs) in type IIa polycrystalline diamond. These studies reveal a heterogeneous crystalline environment that produces a varied density of NV centers, including preferential orientation within some individual crystal grains, but preserves long spin coherence times. Using the native NVs as nanoscale sensors, we introduce a three-dimensional strain imaging technique with high sensitivity ( < 10 − 5 Hz-1/2) and diffraction-limited resolution across a wide field of view.
Publisher
IOP Publishing
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