1,721,181 research outputs found

    2° TOPICAL MEETING OF THE EUROPEAN OPTICAL SOCIETY: Optical Microsystems 2007.

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    Optics in Avionics Plasmonics Photonic crystals and metamaterials Optical microsystems and microsensors Optofluidic microsystems and devices Nonlinear optic devices New characterisation methods for materials and devices Applications of optical system

    4° TOPICAL MEETING OF THE EUROPEAN OPTICAL SOCIETY: Optical Microsystems 2011.

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    Optics in Avionics Plasmonics Photonic crystals and metamaterials Optical microsystems and microsensors Optofluidic microsystems and devices Nonlinear optic devices New characterisation methods for materials and devices Applications of optical system

    1° TOPICAL MEETING OF THE EUROPEAN OPTICAL SOCIETY: Optical Microsystems 2005

    No full text
    Optics in Avionics Plasmonics Photonic crystals and metamaterials Optical microsystems and microsensors Optofluidic microsystems and devices Nonlinear optic devices New characterisation methods for materials and devices Applications of optical system

    3° TOPICAL MEETING OF THE EUROPEAN OPTICAL SOCIETY: Optical Microsystems 2009.

    No full text
    Optics in Avionics Plasmonics Photonic crystals and metamaterials Optical microsystems and microsensors Optofluidic microsystems and devices Nonlinear optic devices New characterisation methods for materials and devices Applications of optical system

    A Photonic Probe for Antenna Measurements

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    The paper describes the design and the numerical analysis of a new dielectric probe (DP) for non-invasive near field antenna measurements. The probe consists of a Lithium Niobate (LiNb03) substrate with a Mach-Zehnder (MZ) interferometer in push-pull (PP) configuration integrated in, and an optimized short dipole antenna printed on its surface. The strong electro-optic effect of LiNb03, in combination with the PP behaviour of the MZ interferometer, allows the amplitude modulation of an optical carrier by the external electric field incident on the probe. Moreover, the short dipole antenna guarantees effective selectivity towards the incident field polarization. The numerical analysis estimates a nearly flat frequency response in the band [1-10] GHz and a minimum detectable signal of a 8.8 mV/m √Hz
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