linkedin post 2015-09-11 06:25:34

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"HYPERBOLIC METAMATERIALS could bring optical advances including powerful microscopes, quantum computers and high-performance solar cells. The material has been shown to work in a broad spectrum from near-infrared to visible light, potentially promising a wide array of applications." 2014). https://lnkd.in/ezhDu_8 View in LinkedIn
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linkedin post 2015-09-11 06:20:06

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HYPERBOLIC METAMATERIALS. "We review the fundamental properties of metamaterials with hyperbolic dispersion and present the various applications where such media offer potential for transformative impact. These artificial materials support unique bulk electromagnetic states which can tailor light-matter interaction at the nanoscale." https://lnkd.in/ePrzn3K View in LinkedIn
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linkedin post 2015-09-10 07:46:11

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SUPERCONDUCTING METAMATERIALS: "superconductors bring three unique advantages to the development of metamaterials, namely (A) low loss, (B) compact dimensions for the meta-atoms compared to other realizations, and (C) new opportunities for nonlinearity, tuning, and switching behavior." https://lnkd.in/eKeSHsf View in LinkedIn
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linkedin post 2015-09-10 07:43:40

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QUNTUM METAMATERIALS. "Another type uses periodically arranged cold atom cells, accomplished with ultra-cold gasses. A photonic bandgap can be demonstrated with this structure, along with tunability and control as a quantum system." Photonic band gap sounds familiar? (Photonic crystals). https://lnkd.in/ebeJXMn View in LinkedIn
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linkedin post 2015-09-12 05:37:36

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ROOT SYSTEM HABITAT. "The rhizosphere provides an especially rich palette for colonization by beneficial (associative and symbiotic) microorganisms, which raises the question as to how roots can distinguish such ‘friends’ from possible ‘foes’ (i.e., pathogens)." https://lnkd.in/eqtV_bF View in LinkedIn
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linkedin post 2015-09-10 07:39:20

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QUANTUM DOTS. "Nanowires can use quantum dots as the unit cells or artificial atoms of the structure, arranged as periodic nanostructures. This material demonstrates a negative index of refraction and effective magnetism and is simple to build. The radiated wavelength of interest is much larger than the constituent diameter." https://lnkd.in/ebeJXMn View in LinkedIn
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