A linearized Boltzmann model in five-terminal geometry shows current partition diagnoses ballistic-hydrodynamic-Ohmic crossover and extracts momentum-relaxing and conserving scattering rates.
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Counterflow conductivity in magnetoexciton bands serves as a tunable probe of the quantum geometric dipole carried by interlayer excitons.
MoSe2/PdSe2 type-I heterostructures achieve a six-fold room-temperature A-exciton photoluminescence enhancement to 6% quantum yield via interlayer coupling that redirects populations away from non-radiative and B-exciton channels.
Double-moiré commensuration in trilayer hBN and graphene heterostructures produces local energy minima, torque reversals, and angle stabilization with binding energies of 0.2-0.3 meV/atom.
Strain reduces the band gap and boosts interfacial dipole moment in the MoSSe/silk heterostructure, more than doubling the triboelectric surface charge density relative to pristine MoSSe.
citing papers explorer
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Characterizing electronic scattering rates with transport in multiterminal devices
A linearized Boltzmann model in five-terminal geometry shows current partition diagnoses ballistic-hydrodynamic-Ohmic crossover and extracts momentum-relaxing and conserving scattering rates.
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Signatures of the Quantum Geometric Dipole of Interlayer Excitons in Counterflow Conductivity
Counterflow conductivity in magnetoexciton bands serves as a tunable probe of the quantum geometric dipole carried by interlayer excitons.
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Highly Efficient Exciton Modulation in MoSe$_2$/PdSe$_2$ Heterostructures
MoSe2/PdSe2 type-I heterostructures achieve a six-fold room-temperature A-exciton photoluminescence enhancement to 6% quantum yield via interlayer coupling that redirects populations away from non-radiative and B-exciton channels.
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Commensuration torques in double-moir\'e twisted trilayer hexagonal boron nitride and graphene heterostructures
Double-moiré commensuration in trilayer hBN and graphene heterostructures produces local energy minima, torque reversals, and angle stabilization with binding energies of 0.2-0.3 meV/atom.
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Strain-tunable interface electrostatics in Janus MoSSe/silk vdW heterostructure for triboelectric nanogeneration
Strain reduces the band gap and boosts interfacial dipole moment in the MoSSe/silk heterostructure, more than doubling the triboelectric surface charge density relative to pristine MoSSe.