4.8 Article

Out-of-plane heat transfer in van der Waals stacks through electron-hyperbolic phonon coupling

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NATURE NANOTECHNOLOGY
卷 13, 期 1, 页码 41-+

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/s41565-017-0008-8

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资金

  1. European Union's Horizon research and innovation programme [696656]
  2. Graphene Flagship
  3. Fondazione Istituto Italiano di Tecnologia
  4. Spanish Ministry of Economy and Competitiveness through the Severo Ochoa Programme for Centres of Excellence in RD [SEV-2015-0522]
  5. Fundacio Cellex Barcelona
  6. Mineco grants Ramon y Cajal [RYC-2012-12281]
  7. Plan Nacional [FIS2013-47161-P]
  8. Government of Catalonia through an SGR grant [2014-SGR-1535]
  9. ERC StG CarbonLight [307806]
  10. ERC grant Hetero2D
  11. EPSRC [EP/K01711X/1, EP/K017144/1, EP/N010345/1, EP/L016087/1]
  12. Mineco Young Investigator Grant [FIS2014-59639-JIN]
  13. ERC Advanced Grant [338957 FEMTO/NANO]
  14. NWO via the Spinoza Prize
  15. Natural Sciences and Engineering Research Council of Canada [PGSD3-426325-2012]
  16. European Union Marie Curie Program (Career Integration grant) [334324 LIGHTER]
  17. Max Planck Society
  18. Elemental Strategy Initiative
  19. JSPS KAKENHI [JP26248061, JP15K21722, JP25106006]
  20. Engineering and Physical Sciences Research Council [EP/G042357/1, EP/K017144/1, EP/K01711X/1, EP/N010345/1, 1577727] Funding Source: researchfish
  21. EPSRC [EP/G042357/1] Funding Source: UKRI

向作者/读者索取更多资源

Van der Waals heterostructures have emerged as promising building blocks that offer access to new physics, novel device functionalities and superior electrical and optoelectronic properties(1-7). Applications such as thermal management, photodetection, light emission, data communication, high-speed electronics and light harvesting(8-16) require a thorough understanding of (nanoscale) heat flow. Here, using time-resolved photocurrent measurements, we identify an efficient out-of-plane energy transfer channel, where charge carriers in graphene couple to hyperbolic phonon polaritons(17-19) in the encapsulating layered material. This hyperbolic cooling is particularly efficient, giving picosecond cooling times for hexagonal BN, where the high-momentum hyperbolic phonon polaritons enable efficient near-field energy transfer. We study this heat transfer mechanism using distinct control knobs to vary carrier density and lattice temperature, and find excellent agreement with theory without any adjustable parameters. These insights may lead to the ability to control heat flow in van der Waals heterostructures.

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