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Hyperbolic phonon polaritons in hexagonal boron nitride

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报告题目   Hyperbolic phonon polaritons in hexagonal boron nitride
报告人   戴思远
报告人单位   Department of Physics University of California, San Diego (UCSD)
报告时间   2015-06-08
报告地点   合肥微尺度物质科学国家实验室(9004室)
主办单位   合肥微尺度物质科学国家实验室、国际功能材料量子设计中心
报告介绍
报告摘要:
Uniaxial materials whose axial and tangential permittivities have opposite signs are referred to as indefinite or hyperbolic media. While hyperbolic responses are normally achieved with metamaterials, hexagonal boron nitride (hBN) naturally possesses this property due to the anisotropic phonons in the mid-infrared. Using scattering-type scanning near-field optical microscopy, we studied polaritonic phenomena in hBN. We performed infrared nano-imaging of highly confined and low-loss hyperbolic phonon polaritons in hBN. The polariton wavelength was shown to be governed by the hBN thickness according to a linear law persisting down to few atomic layers [1]. Additionally, we carried out the modification of hyperbolic response in meta-structures comprised of a mononlayer graphene deposited on hBN [2]. Electrostatic gating of the top graphene layer allows for the modification of wavelength and intensity of hyperbolic phonon polaritons in bulk hBN. The physics of the modification originates from the plasmon-phonon coupling in the hyperbolic medium. Furthermore, we demonstrated the “hyperlens” for subdiffractional focusing and imaging using a slab of hBN [3].
[1] S. Dai et al., Science 343, 1125 (2014).
[2] S. Dai et al., arXiv: 1501.06956, Nature Nanotechnology in press (2015).
[3] S. Dai et al., Nature Communications 6, 6963 (2015).

报告人简介:
  Siyuan Dai received his B.S. degree from University of Science and Technology of China in 2011. He is now a Ph.D. candidate in Physics Department at University of California, San Diego. His current research focuses on nanophotonics & light-matter interactions in two dimensional materials.

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