A new real-space computational methodology computes light-induced Hall transport in disordered graphene, showing generation or suppression of Hall conductivity depending on topology and robustness to disorder.
Additionally, we show the density of states of disordered Bernal bilayer graphene and the for- mula to compute the fluency of the irradiated light
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Real-Space Approach to Light-Induced Hall Transport in Disordered Materials
A new real-space computational methodology computes light-induced Hall transport in disordered graphene, showing generation or suppression of Hall conductivity depending on topology and robustness to disorder.