Origin of electrical noise near charge neutrality in dual gated graphene device
arXiv:2309.12011 · doi:10.1063/5.0147446
Abstract
This letter investigates low frequency 1/ f noise in hBN encapsulated graphene device in a dual gated geometry. The noise study is performed as a function of top gate carrier density (nT G) at different back gate densities (nBG). The noise at low nBG is found to be independent of top gate carrier density. With increasing nBG, noise value increases and a noise peak is observed near charge inhomogeneity of the device. Further increase in nBG leads to decrease in noise magnitude. The shape of the noise is found to be closely related to charge inhomogeneity region of the device. Moreover, the noise and conductivity data near charge neutrality shows clear evidence of noise emanating from combination of charge number and mobility fluctuation
References in corpus (6)
- Strong Suppression of Electrical Noise in Bilayer Graphene Nano Devices
- Effect of Spatial Charge Inhomogeneity on 1/f Noise Behavior in Graphene
- Current crowding mediated large contact noise in graphene field-effect transistors
- Large low-frequency resistance noise in chemical vapor deposited graphene
- Effect of boron nitride defects and charge inhomogeneity on 1/f noise in encapsulated graphene
- Suppression of noise in graphene due to non-scalar mobility fluctuations induced by impurity motion