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The TipTop project aims to utilize scanning nitrogen-vacancy magnetometry to investigate quantum transport in topological insulators. By achieving high spatial resolution and sensitivity, it seeks to link material structure with electronic behavior, enhancing understanding of spintronics and energy-efficient computing.
Topological insulators have attracted attention over the past two decades due to their spin-momentum locked edge states hosting ballistic, spin-polarized, transport, useful for energy-efficient computing and spintronics.
However, probing these states and confirming their origin remains a challenge, as structural and electronic disorder often obscure transport signatures.
To overcome these limitations, TipTop (Tip-based imaging of Topological materials) aims to establish scanning NV magnetometry…
EIDGENOESSISCHE TECHNISCHE HOCHSCHULE ZUERICH
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