arXiv · 2403.09269
Direct observation of nanometer-scale orbital angular momentum accumulation
Abstract
Conversion of charge to orbital angular momentum through the orbital Hall effect (OHE) holds transformative potential for the development of orbital-based electronics, however, it is challenging to directly observe the electrically generated orbital accumulation. Here, we detect the OHE by directly quantifying the orbital accumulation along the edges of a titanium thin film using a scanning transmission electron microscope. We measure the Ti L-edge using electron energy-loss spectroscopy with nanometer resolution and find a sizable orbital accumulation at the sample's outer perimeters, consistent with all signatures expected for the OHE, and determine an orbital diffusion length $\ell_o \approx 7.3$ nm. Our data points to a surprising dependence of the orbital diffusion length on the nano-structural morphology.
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Juan Carlos Idrobo, Ján Rusz, Gopal Datt, Daegeun Jo, Sanaz Alikhah, David Muradas, Ulrich Noumbe, M. Venkata Kamalakar, Peter M. Oppeneer. 2024-03-14. Direct observation of nanometer-scale orbital angular momentum accumulation. https://arxiv.org/abs/2403.09269
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