Research paperTheoreticalFine structure of the cyclotron resonance in heterobilayers of proximitized graphene and transition metal dichalcogenidesM. A. Rakitskii, K. S. Denisov, N. S. Averkiev2026·10.1063/1.5119932·arXiv:2606.23895AbstractWe analyze cyclotron resonance and combined cyclotron resonance absorption in monolayer graphene proximitized by transition metal dichalcogenides and other van der Waals materials at quantizing magnetic fields. Using a low-energy effective Dirac model with proximity-induced spin-orbit and Rashba interactions, we calculate the absorption spectrum and show that proximity effects generate a fine double-peak structure of the main interband cyclotron resonance lines and additional spin-flip absorption features.Read more
Theoretical graphene/TMD heterobilayer system used as a proximitized graphene model under quantizing magnetic field.1 characterization3 properties3 figuresSimulatedCStudied MaterialMoS₂Studied MaterialWSe₂Studied MaterialExpand
Research paperTheoreticalFine structure of the cyclotron resonance in heterobilayers of proximitized graphene and transition metal dichalcogenidesM. A. Rakitskii, K. S. Denisov, N. S. Averkiev2026·10.1063/1.5119932·arXiv:2606.23895AbstractWe analyze cyclotron resonance and combined cyclotron resonance absorption in monolayer graphene proximitized by transition metal dichalcogenides and other van der Waals materials at quantizing magnetic fields. Using a low-energy effective Dirac model with proximity-induced spin-orbit and Rashba interactions, we calculate the absorption spectrum and show that proximity effects generate a fine double-peak structure of the main interband cyclotron resonance lines and additional spin-flip absorption features.Read more
Theoretical graphene/TMD heterobilayer system used as a proximitized graphene model under quantizing magnetic field.1 characterization3 properties3 figuresSimulatedCStudied MaterialMoS₂Studied MaterialWSe₂Studied MaterialExpand
Research paperTheoreticalFine structure of the cyclotron resonance in heterobilayers of proximitized graphene and transition metal dichalcogenidesM. A. Rakitskii, K. S. Denisov, N. S. Averkiev2026·10.1063/1.5119932·arXiv:2606.23895AbstractWe analyze cyclotron resonance and combined cyclotron resonance absorption in monolayer graphene proximitized by transition metal dichalcogenides and other van der Waals materials at quantizing magnetic fields. Using a low-energy effective Dirac model with proximity-induced spin-orbit and Rashba interactions, we calculate the absorption spectrum and show that proximity effects generate a fine double-peak structure of the main interband cyclotron resonance lines and additional spin-flip absorption features.Read more
Theoretical graphene/TMD heterobilayer system used as a proximitized graphene model under quantizing magnetic field.1 characterization3 properties3 figuresSimulatedCStudied MaterialMoS₂Studied MaterialWSe₂Studied MaterialExpand
Research paperTheoreticalFine structure of the cyclotron resonance in heterobilayers of proximitized graphene and transition metal dichalcogenidesM. A. Rakitskii, K. S. Denisov, N. S. Averkiev2026·10.1063/1.5119932·arXiv:2606.23895AbstractWe analyze cyclotron resonance and combined cyclotron resonance absorption in monolayer graphene proximitized by transition metal dichalcogenides and other van der Waals materials at quantizing magnetic fields. Using a low-energy effective Dirac model with proximity-induced spin-orbit and Rashba interactions, we calculate the absorption spectrum and show that proximity effects generate a fine double-peak structure of the main interband cyclotron resonance lines and additional spin-flip absorption features.Read more
Theoretical graphene/TMD heterobilayer system used as a proximitized graphene model under quantizing magnetic field.1 characterization3 properties3 figuresSimulatedCStudied MaterialMoS₂Studied MaterialWSe₂Studied MaterialExpand