Starko-Bowes Ryan, Wang Xueji, Xu Zhujing, Pramanik Sandipan, Lu Na, Li Tongcang, Jacob Zubin
University of Alberta , Edmonton , Alberta T6G 2R3 , Canada.
Birck Nanotechnology Center , Purdue University , West Lafayette , Indiana 47907 , United States.
Nano Lett. 2019 Dec 11;19(12):8565-8571. doi: 10.1021/acs.nanolett.9b03059. Epub 2019 Oct 17.
High-temperature thermal photonics presents unique challenges for engineers as the database of materials that can withstand extreme environments are limited. In particular, ceramics with high temperature stability that can support coupled light-matter excitations, that is, polaritons, open new avenues for engineering radiative heat transfer. Hexagonal boron nitride (hBN) is an emerging ceramic 2D material that possesses low-loss polaritons in two spectrally distinct mid-infrared frequency bands. The hyperbolic nature of these frequency bands leads to a large local density of states (LDOS). In 2D form, these polaritonic states are dark modes, bound to the material. In cylindrical form, boron nitride nanotubes (BNNTs) create subwavelength particles capable of coupling these dark modes to radiative ones. In this study, we leverage the high-frequency optical phonons present in BNNTs to create strong mid-IR thermal antenna emitters at high temperatures (938 K). Through direct measurement of thermal emission of a disordered system of BNNTs, we confirm their radiative polaritonic modes and show that the antenna behavior can be observed even in a disordered system. These are among the highest-frequency optical phonon polaritons that exist and could be used as high-temperature mid-IR thermal nanoantenna sources.
高温热光子学给工程师带来了独特的挑战,因为能够承受极端环境的材料数据库有限。特别是具有高温稳定性、能够支持光与物质耦合激发(即极化激元)的陶瓷,为辐射热传递工程开辟了新途径。六方氮化硼(hBN)是一种新兴的陶瓷二维材料,在两个光谱上不同的中红外频段具有低损耗极化激元。这些频段的双曲线性质导致了较大的局域态密度(LDOS)。在二维形式下,这些极化激元态是暗模式,与材料结合。以圆柱形形式存在时,氮化硼纳米管(BNNTs)会形成能够将这些暗模式与辐射模式耦合的亚波长粒子。在本研究中,我们利用BNNTs中存在的高频光学声子,在高温(938 K)下创建强中红外热天线发射器。通过直接测量BNNTs无序系统的热发射,我们证实了它们的辐射极化激元模式,并表明即使在无序系统中也能观察到天线行为。这些是现有的最高频率光学声子极化激元之一,可作为高温中红外热纳米天线源。