Research paperTheoreticalComputational Kinetic ModelQuantum Sensing of Single Phonons via Phonon Drag in Two-Dimensional MaterialsAli Kefayati, Jonathan P. Bird, Vasili PerebeinosarXiv·2022·10.1103/PhysRevB.106.155415·arXiv:2209.08677AbstractWe predict that van der Waals heterostructures consisting of graphene and hexagonal boron nitride can detect single surface polar phonons electrically via phonon drag. Using a Boltzmann transport equation framework, we show that the induced drag voltage can reach a few hundred microvolts per phonon, and is relatively insensitive to graphene mobility and robust up to at least 300 K.Read more
Monolayer graphene on multilayer hBN heterostructure used for phonon-drag transport calculations.1 propertySimulatedCStudied MaterialhBNSubstrate / DielectricExpand
AB-stacked bilayer graphene on multilayer hBN heterostructure used for phonon-drag transport calculations.1 propertySimulatedCStudied MaterialhBNSubstrate / DielectricExpand
Research paperTheoreticalComputational Kinetic ModelQuantum Sensing of Single Phonons via Phonon Drag in Two-Dimensional MaterialsAli Kefayati, Jonathan P. Bird, Vasili PerebeinosarXiv·2022·10.1103/PhysRevB.106.155415·arXiv:2209.08677AbstractWe predict that van der Waals heterostructures consisting of graphene and hexagonal boron nitride can detect single surface polar phonons electrically via phonon drag. Using a Boltzmann transport equation framework, we show that the induced drag voltage can reach a few hundred microvolts per phonon, and is relatively insensitive to graphene mobility and robust up to at least 300 K.Read more
Monolayer graphene on multilayer hBN heterostructure used for phonon-drag transport calculations.1 propertySimulatedCStudied MaterialhBNSubstrate / DielectricExpand
AB-stacked bilayer graphene on multilayer hBN heterostructure used for phonon-drag transport calculations.1 propertySimulatedCStudied MaterialhBNSubstrate / DielectricExpand
Research paperTheoreticalComputational Kinetic ModelQuantum Sensing of Single Phonons via Phonon Drag in Two-Dimensional MaterialsAli Kefayati, Jonathan P. Bird, Vasili PerebeinosarXiv·2022·10.1103/PhysRevB.106.155415·arXiv:2209.08677AbstractWe predict that van der Waals heterostructures consisting of graphene and hexagonal boron nitride can detect single surface polar phonons electrically via phonon drag. Using a Boltzmann transport equation framework, we show that the induced drag voltage can reach a few hundred microvolts per phonon, and is relatively insensitive to graphene mobility and robust up to at least 300 K.Read more
Monolayer graphene on multilayer hBN heterostructure used for phonon-drag transport calculations.1 propertySimulatedCStudied MaterialhBNSubstrate / DielectricExpand
AB-stacked bilayer graphene on multilayer hBN heterostructure used for phonon-drag transport calculations.1 propertySimulatedCStudied MaterialhBNSubstrate / DielectricExpand
Research paperTheoreticalComputational Kinetic ModelQuantum Sensing of Single Phonons via Phonon Drag in Two-Dimensional MaterialsAli Kefayati, Jonathan P. Bird, Vasili PerebeinosarXiv·2022·10.1103/PhysRevB.106.155415·arXiv:2209.08677AbstractWe predict that van der Waals heterostructures consisting of graphene and hexagonal boron nitride can detect single surface polar phonons electrically via phonon drag. Using a Boltzmann transport equation framework, we show that the induced drag voltage can reach a few hundred microvolts per phonon, and is relatively insensitive to graphene mobility and robust up to at least 300 K.Read more
Monolayer graphene on multilayer hBN heterostructure used for phonon-drag transport calculations.1 propertySimulatedCStudied MaterialhBNSubstrate / DielectricExpand
AB-stacked bilayer graphene on multilayer hBN heterostructure used for phonon-drag transport calculations.1 propertySimulatedCStudied MaterialhBNSubstrate / DielectricExpand