Hajian Hodjat, Ghobadi Amir, Butun Bayram, Ozbay Ekmel
Opt Express. 2018 Jun 25;26(13):16940-16954. doi: 10.1364/OE.26.016940.
In this paper, we propose an electrically tunable mid-infrared plasmonic-phononic absorber with omnidirectional and polarization insensitive nearly perfect resonant absorption characteristics. The absorber consists of a graphene/hexagonal boron nitride (hBN)/graphene multilayer on top of a gold bottom reflector separated by a dielectric spacer. The graphene/hBN/graphene multilayer is patterned as a hole array in square lattice. We analytically and numerically prove that, due to the support of hybrid plasmon-phonon-polaritons, nearly perfect multi-resonant absorption peaks with high quality factors are obtained both inside and outside of the Reststrahlen band of hBN. As a result of the hybridization of graphene plasmons with the hyperbolic phonon polaritons of hBN, the high quality resonant absorptions of the metamaterial are almost unaffected by decreasing the phenomenological electron relaxation time of graphene. Moreover, the obtained resonances can be effectively tuned in practice due to the continuity of the graphene layers in the hole array metamaterial. These features make the graphene-hBN metamaterial a skeptical design for practical purposes and mid-infrared multi-functional operations such as sensing.
在本文中,我们提出了一种具有全向和偏振不敏感的近乎完美共振吸收特性的电调谐中红外等离子体-声子吸收器。该吸收器由位于金底反射器上方的石墨烯/六方氮化硼(hBN)/石墨烯多层结构组成,中间由电介质间隔层隔开。石墨烯/hBN/石墨烯多层结构被图案化为方形晶格中的孔阵列。我们通过分析和数值证明,由于混合等离子体-声子-极化子的支持,在hBN的Reststrahlen带内外都获得了具有高品质因数的近乎完美的多共振吸收峰。由于石墨烯等离子体与hBN的双曲声子极化子的杂化,超材料的高品质共振吸收几乎不受石墨烯唯象电子弛豫时间减小的影响。此外,由于孔阵列超材料中石墨烯层的连续性,所获得的共振在实际中可以有效地调谐。这些特性使石墨烯-hBN超材料成为用于实际目的和诸如传感等中红外多功能操作的理想设计。