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Probing metastable space-charge potentials in a wide bandgap semiconductor

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arxiv 2012.10810 v1 pith:4UI4WON5 submitted 2020-12-19 cond-mat.mes-hall

Probing metastable space-charge potentials in a wide bandgap semiconductor

classification cond-mat.mes-hall
keywords chargepotentialsbandgapcarrierfieldmetastablepatternsspace
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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While the study of space charge potentials has a long history, present models are largely based on the notion of steady state equilibrium, ill-suited to describe wide bandgap semiconductors with moderate to low concentrations of defects. Here we build on color centers in diamond both to locally inject carriers into the crystal and probe their evolution as they propagate in the presence of external and internal potentials. We witness the formation of metastable charge patterns whose shape - and concomitant field - can be engineered through the timing of carrier injection and applied voltages. With the help of previously crafted charge patterns, we unveil a rich interplay between local and extended sources of space charge field, which we then exploit to show space-charge-induced carrier guiding.

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