November 2023

Journal

p−n Junction Dynamics Induced in a Graphene Channel by Ferroelectric-Domain Motion in the Substrate

By:
Kurchak, Anatolii; Eliseev, E.; Kalinin, Sergei V; Strikha, Maksym; Morozovska, Anna
Journal Name:
Physical Review Applied
Page Number:
024027
Volume:
8
Issue Number:
2
Publication Date:
November 2023
View DOI Listing:
https://doi.org/10.1103/PhysRevApplied.8.024027

Abstract

The p−n junction dynamics induced in a graphene channel by stripe-domain nucleation, motion, and reversal in a ferroelectric substrate is explored using a self-consistent approach based on Landau-Ginzburg-Devonshire phenomenology combined with classical electrostatics. Relatively low gate voltages are required to induce the hysteresis of ferroelectric polarization and graphene charge in response to the periodic gate voltage. Pronounced nonlinear hysteresis of graphene conductance with a wide memory window corresponds to high amplitudes of gate voltage. Also, we reveal the extrinsic size effect in the dependence of the graphene-channel conductivity on its length. We predict that the top-gate–dielectric-layer–graphene-channel–ferroelectric-substrate nanostructure considered here can be a promising candidate for the fabrication of the next generation of modulators and rectifiers based on the graphene p−n junctions.