Research paperTheoreticalComputed TransportObservability of cyclotron resonance in the hydrodynamic regime of bilayer grapheneJoseph R. Cruise, Alexander Seidel, Erik Henriksen, Giovanni VignalearXiv preprint·2024·10.1063/1.4705382/14763431/083715·arXiv:2402.02231AbstractWe offer theoretical predictions for the frequency of the resonant frequency of transport for the hydrodynamic description of bilayer graphene, as well as provide quantification for the relative strength of this signal throughout phase space. Our calculations are based on classical fluid dynamics equations derived from the Boltzmann equation for bilayer graphene, and suggest that while this resonance is accessible to current experimental techniques, the same mechanism which causes the hydrodynamic resonance to differ from the Fermi liquid value is responsible for a significant broadening of the peak.Read more
Hydrodynamic transport model of AB-stacked bilayer graphene in the electron-hole fluid regime under magnetic field and temperature gradients.1 characterization4 figuresSimulatedCStudied MaterialExpand
Research paperTheoreticalComputed TransportObservability of cyclotron resonance in the hydrodynamic regime of bilayer grapheneJoseph R. Cruise, Alexander Seidel, Erik Henriksen, Giovanni VignalearXiv preprint·2024·10.1063/1.4705382/14763431/083715·arXiv:2402.02231AbstractWe offer theoretical predictions for the frequency of the resonant frequency of transport for the hydrodynamic description of bilayer graphene, as well as provide quantification for the relative strength of this signal throughout phase space. Our calculations are based on classical fluid dynamics equations derived from the Boltzmann equation for bilayer graphene, and suggest that while this resonance is accessible to current experimental techniques, the same mechanism which causes the hydrodynamic resonance to differ from the Fermi liquid value is responsible for a significant broadening of the peak.Read more
Hydrodynamic transport model of AB-stacked bilayer graphene in the electron-hole fluid regime under magnetic field and temperature gradients.1 characterization4 figuresSimulatedCStudied MaterialExpand
Research paperTheoreticalComputed TransportObservability of cyclotron resonance in the hydrodynamic regime of bilayer grapheneJoseph R. Cruise, Alexander Seidel, Erik Henriksen, Giovanni VignalearXiv preprint·2024·10.1063/1.4705382/14763431/083715·arXiv:2402.02231AbstractWe offer theoretical predictions for the frequency of the resonant frequency of transport for the hydrodynamic description of bilayer graphene, as well as provide quantification for the relative strength of this signal throughout phase space. Our calculations are based on classical fluid dynamics equations derived from the Boltzmann equation for bilayer graphene, and suggest that while this resonance is accessible to current experimental techniques, the same mechanism which causes the hydrodynamic resonance to differ from the Fermi liquid value is responsible for a significant broadening of the peak.Read more
Hydrodynamic transport model of AB-stacked bilayer graphene in the electron-hole fluid regime under magnetic field and temperature gradients.1 characterization4 figuresSimulatedCStudied MaterialExpand
Research paperTheoreticalComputed TransportObservability of cyclotron resonance in the hydrodynamic regime of bilayer grapheneJoseph R. Cruise, Alexander Seidel, Erik Henriksen, Giovanni VignalearXiv preprint·2024·10.1063/1.4705382/14763431/083715·arXiv:2402.02231AbstractWe offer theoretical predictions for the frequency of the resonant frequency of transport for the hydrodynamic description of bilayer graphene, as well as provide quantification for the relative strength of this signal throughout phase space. Our calculations are based on classical fluid dynamics equations derived from the Boltzmann equation for bilayer graphene, and suggest that while this resonance is accessible to current experimental techniques, the same mechanism which causes the hydrodynamic resonance to differ from the Fermi liquid value is responsible for a significant broadening of the peak.Read more
Hydrodynamic transport model of AB-stacked bilayer graphene in the electron-hole fluid regime under magnetic field and temperature gradients.1 characterization4 figuresSimulatedCStudied MaterialExpand