Abstract
In-plane Hyperbolic Phonon polaritons (HPhPs) are quasiparticles formed via coupling of photons and optical phonons in in-plane hyperbolic materials and offer unique applications in sensing, thermal emitters and high-resolution imaging. However, the large momentum mismatch between photons and these in-plane HPhPs has restricted their technological potential as most experimental demonstrations rely on sophisticated and expensive near-field detection schemes. In this work, using the example of α-MoO3, it is demonstrated that by constructing photonic hypercrystals of this material, one can not only excite these in-plane HPhPs in the far field but also tune the far field response via twisting the hypercrystal lattice with respect the lattice of α-MoO3. The findings will pave the way for the development of practical in-plane HPhP devices as well as provide access to new fundamental physics of such materials via conventional and well developed far-field measurement techniques.
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CITATION STYLE
Sahoo, N. R., Kumar, B., Prasath, S. S. J., Dixit, S., Kumar, R., Bapat, A., … Kumar, A. (2024). Polaritons in Photonic Hypercrystals of van der Waals Materials. Advanced Functional Materials, 34(41). https://doi.org/10.1002/adfm.202316863
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