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Tags: plasmonics

Resources (21-31 of 31)

  1. BNC Annual Research Review: Transforming Light with Metamaterials

    15 Feb 2010 | Online Presentations | Contributor(s): Vladimir M. Shalaev

    One of the most unique properties of light is that it can package information into a signal of zero mass and propagate it at the ultimate speed. It is, however, a daunting challenge to bring...

  2. Optical BioMEMS Microfluidic Technologies for Hand-Held, Point-of-Care, Medical Devices

    23 Nov 2009 | Online Presentations | Contributor(s): James Leary

    Portable, point-of-care, medical diagnostic devices could provide an important new component in more cost-effective healthcare delivery. Rapid measurements of blood samples during an examination...

  3. Illinois 2009 nano-biophotonics Summer School, Lecture 11: Plasmonics, Metamaterials

    28 Oct 2009 | Online Presentations | Contributor(s): Nick Fang

    Plasmonics, Meta-Materials Topics: New Frontiers of Photonics What Are Meta-Materials? Electromagnetic Meta-Materials Effective Medium Properties Plasmonic "Atoms" and...

  4. Nano-Plasmonic Bowtie Antenna Simulator

    18 Mar 2008 | Tools | Contributor(s): Alexander S McLeod, Jeffrey B. Neaton, P. James Schuck, Eugene Song, Graham Chapman

    A tool for simulating the near-field enhancement effects of nano-scale bowtie antennae.

  5. KIST/PU Multiplex Detection of Cell Surface Markers Using Plasmonic Sensors

    23 Oct 2007 | Online Presentations | Contributor(s): Joseph M K Irudayaraj

    Gold nanorod molecular probes (GNrMPs) were designed and fabricated for multiplex identification of cell surface markers in HBECs. Cells were probed directly using dark field microscopy integrated...

  6. KIST/PU Bridging Nonlinear Optical Imaging and Nanotechnology with Medicine

    23 Oct 2007 | Online Presentations | Contributor(s): Ji-Xin Cheng

    Our interdisciplinary research develops and utilizes state-of-the-art optical imaging techniques and nanotechnology to tackle compelling biomedical problems highly related to human health....

  7. Conquering Surface Plasmon Resonance Loss in Metallic Nanostructures

    16 Oct 2007 | Online Presentations | Contributor(s): Mikhail A. Noginov

    We have observed the compensation of loss in metal by gain in dielectric in the mixture of Ag aggregate and rhodamine 6G dye. The demonstrated six-fold enhancement of the Rayleigh scattering is...

  8. Micro-scaled Biochips with Optically Active Surfaces for Near and Far-field Analysis of Cellular Fluorescence

    31 Aug 2007 | Online Presentations | Contributor(s): Huw Summers

    The integration of thin (< 100 nm) metal films with micro-scale optical waveguides provides a route to controlled spatial excitation of cellular fluorescence within a biochip...

  9. Biosensing applications of Plasmon Resonance in gold nanoparticles

    02 Aug 2007 | Online Presentations | Contributor(s): Karina Moore

    Light can be used to excite plasmon resonance in gold nanoparticles. Plasmon resonance occurs on the nanoscale as the particles become excited and plasmon oscillations arise in each particle of a...

  10. ECE 695s Nanophotonics

    30 Aug 2006 | Courses | Contributor(s): Vladimir M. Shalaev

    Welcome to the ECE 695S lectures The course will cover nanoscale processes and devices and their applications for manipulating light on the nanoscale. The following topics will be...

  11. Plasmonic Nanophotonics: Coupling Light to Nanostructure via Plasmons

    03 Oct 2005 | Online Presentations | Contributor(s): Vladimir M. Shalaev

    The photon is the ultimate unit of information because it packages data in a signal of zero mass and has unmatched speed. The power of light is driving the photonicrevolution, and information..., a resource for nanoscience and nanotechnology, is supported by the National Science Foundation and other funding agencies. Any opinions, findings, and conclusions or recommendations expressed in this material are those of the author(s) and do not necessarily reflect the views of the National Science Foundation.