Authors
Kyle P Kelley, Evan L Runnerstrom, Edward Sachet, Christopher T Shelton, Everett D Grimley, Andrew Klump, James M LeBeau, Zlatko Sitar, Jonathan Y Suen, Willie J Padilla, Jon-Paul Maria
Publication date
2019/4/18
Journal
Acs Photonics
Volume
6
Issue
5
Pages
1139-1145
Publisher
American Chemical Society
Description
In this Letter, we demonstrate a new class of infrared nanophotonic materials based on monolithic, multilayered doped cadmium oxide (CdO) thin films, where each CdO layer is individually tuned to support a separate epsilon-near-zero (ENZ) resonance. Infrared reflectivity measurements reveal that the optical response of the multilayered stack combines multiple discrete absorption events, each associated with an individual ENZ plasmonic polaritonic mode. Structural and chemical characterization confirm that the multilayers are homoepitaxial and monolithic, with internal interfaces defined by discrete steps in dopant density and carrier concentration. Structurally, the layers are indistinguishable as they differ from their neighbors by only ∼1 in 10000 constituent atoms. The optoelectronic property contrast, however, is pronounced, as each layer maintains an independent electron concentration, as corroborated by …
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