In MoS2xSe2(1-x) monolayers, increasing sulfur content raises the optical gap, shrinks the B-A exciton splitting, increases phonon energy, and raises circular polarization from ~0% to ~15%.
F.; Lee, C.; Hone, J.; Shan, J.; Heinz, T
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Alloy engineering of excitonic properties in TMD monolayers
In MoS2xSe2(1-x) monolayers, increasing sulfur content raises the optical gap, shrinks the B-A exciton splitting, increases phonon energy, and raises circular polarization from ~0% to ~15%.