linkedin post 2015-10-29 06:27:31

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"LASERS are the heart of modern communication technology. As the industry strives continuously to improve the speed, efficiency and compactness of communication equipment, it is constantly on the look-out for new materials, techniques and methods that help the cause. Photonic crystal lasers have caught the attention of scientists and engineers for that very reason." https://lnkd.in/e3AXuz6 View in LinkedIn
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linkedin post 2015-10-29 06:24:32

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WAVE-GUIDING. "Hyperbolic metamaterials are a multi-functional platform to realize waveguiding, imaging, sensing, quantum and thermal engineering beyond conventional devices. This metamaterial uses the concept of engineering the basic dispersion relation of waves to provide unique electromagnetic modes that can have a broad range of applications." https://lnkd.in/ePrzn3K View in LinkedIn
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linkedin post 2015-10-31 07:14:43

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TEASING MECHANISM APART. "The functional differences of thermoTRP channels among species have been utilized for understanding the molecular basis for their activation (or inhibition) mechanisms, and amino acid residues (or domains) responsible for the respective channel properties have been identified in various thermoTRP channels." https://lnkd.in/erbAj5A View in LinkedIn
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linkedin post 2015-10-31 07:11:06

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FRAGMENT IN NATURE continues from last weekend with the molecule called TRPA1. A great deal is known about its structure, function and mechanism, and it is an exemplar of the enormous creativity in nature, using a single molecular motif to achieve a phenomenal range of biological functions, many of which are key for survival. View in LinkedIn
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linkedin post 2015-10-30 07:22:09

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"PERIODIC STRUCTURES can block sound waves in certain frequency ranges and directions when interference effects lead to the formation of phononic band gaps. Phononic crystals with diamond symmetry, like this artificial 3D structure, have the largest band gaps." https://lnkd.in/ehwDYhR View in LinkedIn
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linkedin post 2015-10-30 07:19:34

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90 GHz SWITCHING. "Able to flip on and off 90 billion times a second, a new plasmonic light emitter could form the basis of optical computing. The eventual goal is to integrate our technology into a device that can be excited either optically or electrically. That's something that I think everyone, including funding agencies, is pushing pretty hard for." https://lnkd.in/eQXi_8T View in LinkedIn
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