Epsilon‐near‐zero photonics: a new platform for integrated devices
X Niu, X Hu, S Chu, Q Gong - Advanced Optical Materials, 2018 - Wiley Online Library
Abstract Epsilon‐near‐zero (ENZ) photonics is the study of light–matter interactions in the
presence of structures with near‐zero permittivity and has been emerging as an important …
presence of structures with near‐zero permittivity and has been emerging as an important …
Epsilon-near-zero photonics: infinite potentials
With its unique and exclusive linear and nonlinear optical characteristics, epsilon-near-zero
(ENZ) photonics has drawn a tremendous amount of attention in the recent decade in the …
(ENZ) photonics has drawn a tremendous amount of attention in the recent decade in the …
Electro-optic modulation in integrated photonics
Electro-optic modulators are an indispensable part of photonic communication systems,
largely dictating the achievable transmission rate. Recent advances in materials and …
largely dictating the achievable transmission rate. Recent advances in materials and …
Transparent conducting oxides: from all-dielectric plasmonics to a new paradigm in integrated photonics
During the past few years, the optics and photonics communities have renewed their
attention toward transparent conducting oxides (TCOs), which for over two decades have …
attention toward transparent conducting oxides (TCOs), which for over two decades have …
Thin film ferroelectric photonic-electronic memory
To reduce system complexity and bridge the interface between electronic and photonic
circuits, there is a high demand for a non-volatile memory that can be accessed both …
circuits, there is a high demand for a non-volatile memory that can be accessed both …
Gigahertz speed operation of epsilon-near-zero silicon photonic modulators
Optical communication systems increasingly require electro-optical modulators that deliver
high modulation speeds across a large optical bandwidth with a small device footprint and a …
high modulation speeds across a large optical bandwidth with a small device footprint and a …
Broadband, high‐speed, and large‐amplitude dynamic optical switching with yttrium‐doped cadmium oxide
Transparent conducting oxides, such as doped indium oxide, zinc oxide, and cadmium
oxide (CdO), have recently attracted attention as tailorable materials for applications in …
oxide (CdO), have recently attracted attention as tailorable materials for applications in …
On-chip wavelength division multiplexing filters using extremely efficient gate-driven silicon microring resonator array
Abstract Silicon microring resonators (Si-MRRs) play essential roles in on-chip wavelength
division multiplexing (WDM) systems due to their ultra-compact size and low energy …
division multiplexing (WDM) systems due to their ultra-compact size and low energy …
Electrically tunable high-quality factor silicon microring resonator gated by high mobility conductive oxide
Silicon microring resonators play pivotal roles in photonic integration circuits due to the
advantages of low power consumption, high bandwidth, and ultracompact size. However …
advantages of low power consumption, high bandwidth, and ultracompact size. However …
High-speed plasmonic-silicon modulator driven by epsilon-near-zero conductive oxide
Transparent conductive oxides (TCOs) such as indium-tin oxide (ITO) have attracted
increasing interests in integrated photonics and silicon photonics, owing to their large …
increasing interests in integrated photonics and silicon photonics, owing to their large …