Heat flux splitter for near-field thermal radiation
arXiv:1506.00378 · doi:10.1063/1.4928430
Abstract
We demonstrate the possibility to efficiently split the near-field heat flux exchanged between graphene nano-disks by tuning their doping. This result paves the way for the developement of an active control of propagation directions for heat fluxes exchanged in near-field throughout integrated nanostructures networks.
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- Radiative thermal rectification in many-body systems
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- Near-field radiative heat transfer between twisted nanoparticle gratings
- Near-Field Radiative Heat Transfer Eigenmodes
- Radiative Heat Transfer Between Core-Shell Nanoparticles
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- Giant Thermal Magnetoresistance Driven by Graphene Magnetoplasmon
- Thermal photon drag in many-body systems
- Near-field thermal transport between twisted bilayer graphene
- Radiative Resistance at The Nano-scale: Thermal Barrier
- Controlling local thermal states in classical many-body systems
- High Resolution Measurement of Near-Field Radiative Heat Transfer enabled by Nanomechanical Resonators