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Kinetic Monte‐Carlo Simulation of Exciton Hopping: Urbach Tails in Gas‐Molecule Decorated MoSe 2
Ist Teil von
physica status solidi (b), 2021-11, Vol.258 (11)
Erscheinungsjahr
2021
Quelle
Wiley Blackwell Single Titles
Beschreibungen/Notizen
Disorder parameters of gas‐molecule decorated monolayer are quantitatively investigated. This material system is interesting because disorder may be introduced and removed at will by regulating the number of adsorbed gas molecules through laser annealing. These molecules electrostatically trap excitons leading to localized defect states, which are exponentially distributed in energy. Herein, experiments are described by kinetic Monte‐Carlo simulations, in summary enabling richer studies than within crystalline materials with a fixed degree of disorder. It is found that the surface coverage of the MoSe
2
may reach up to one molecule per 2 nm
2
and that the density of adsorbed molecules depends on the laser power by a power law.