Ratchet effect in spatially modulated bilayer graphene: Signature of hydrodynamic transport

E Mönch, SO Potashin, K Lindner, I Yahniuk, LE Golub… - Physical Review B, 2022 - APS
We report on the observation of the ratchet effect—generation of direct electric current in
response to external terahertz radiation—in bilayer graphene, where inversion symmetry is …

Nonlinear intensity dependence of ratchet currents induced by terahertz laser radiation in bilayer graphene with asymmetric periodic grating gates

E Mönch, S Hubmann, I Yahniuk, S Schweiss… - Journal of Applied …, 2023 - pubs.aip.org
We report on the observation of a nonlinear intensity dependence of the terahertz radiation-
induced ratchet effects in bilayer graphene with asymmetric dual-grating gate lateral lattices …

Electrodeposition of lithium metal on lithium anode surface, a simulation study by: Kinetic Monte Carlo-embedded atom method

BG Choobar, H Modarress, R Halladj… - Computational Materials …, 2021 - Elsevier
In this paper by using Kinetic Monte Carlo (KMC) method along with the embedded atom
method (EAM), the electrodeposition of lithium metal on the lithium anode surface in lithium …

Protein detection using quadratic fit analysis near the dirac point of graphene field-effect biosensors

SO Woo, J Froberg, Y Pan, S Tani… - ACS applied …, 2020 - ACS Publications
Although graphene-based biosensors provide extreme sensitivity for the detection of atoms,
gases, and biomolecules, the specificity of graphene biosensors to the target molecules …

Quadratic Fit Analysis of the Nonlinear Transconductance of Disordered Bilayer Graphene Field‐Effect Biosensors Functionalized with Pyrene Derivatives

SO Woo, S Tani, Y Choi - Graphene Field‐Effect Transistors …, 2023 - Wiley Online Library
This chapter explores the application of graphene biosensors in detecting targeted
biomolecules. While these biosensors exhibit high sensitivity, achieving specificity toward …

Tuning the magnetic configuration of bilayer graphene quantum dot by twisting

M Luo - MRS Bulletin, 2024 - Springer
Twistronics has recently attracted tremendous attention because the twisting can engineer
the bilayer graphene-like materials into varying types of strongly correlated phases. In this …