Nanoscale Ferroelectric Programming of van der Waals Heterostructures

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Abstract

We demonstrate an approach to creating nanoscale potentials in van der Waals layers integrated with a buried programmable ferroelectric layer. Using ultra-low-voltage electron beam lithography (ULV-EBL), we can program the ferroelectric polarization in Al1-xBxN (AlBN) thin films, generating structures with sizes as small as 35 nm. We demonstrate the ferroelectric field effect with a graphene/vdW stack on AlBN by creating a p-n junction. This resist-free, high-resolution, contactless patterning method offers a new pathway to integrate ferroelectric films with a wide range of two-dimensional layers including transition-metal dichalcogenides (TMD), enabling arbitrary programming and top-down creation of multifunctional devices.

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Yang, D., Cao, Q., Akyuz, E., Hayden, J., Nordlander, J., Mercer, I., … Levy, J. (2024). Nanoscale Ferroelectric Programming of van der Waals Heterostructures. Nano Letters, 24(51), 16231–16238. https://doi.org/10.1021/acs.nanolett.4c03574

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