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    • 1. 发明申请
    • THREE-DIMENSIONAL COHERENT PLASMONIC NANOWIRE ARRAYS FOR ENHANCEMENT OF OPTICAL PROCESSES
    • 用于增强光学过程的三维相关等离子体纳米阵列
    • US20120273662A1
    • 2012-11-01
    • US13456316
    • 2012-04-26
    • Joshua D. CaldwellOrest J. GlembockiSharka M. ProkesRonald W. Rendell
    • Joshua D. CaldwellOrest J. GlembockiSharka M. ProkesRonald W. Rendell
    • G01J1/42
    • G01N21/658
    • A plasmonic grating sensor having periodic arrays of vertically aligned plasmonic nanopillars, nanowires, or both with an interparticle pitch ranging from λ/8−2λ, where λ is the incident wavelength of light divided by the effective index of refraction of the sample; a coupled-plasmonic array sensor having vertically aligned periodic arrays of plasmonically coupled nanopillars, nanowires, or both with interparticle gaps sufficient to induce overlap between the plasmonic evanescent fields from neighboring nanoparticles, typically requiring edge-to-edge separations of less than 20 nm; and a plasmo-photonic array sensor having a double-resonant, periodic array of vertically aligned subarrays of 1 to 25 plasmonically coupled nanopillars, nanowires, or both where the subarrays are periodically spaced at a pitch on the order of a wavelength of light.
    • 等离子体激元光栅传感器,其具有垂直对准的等离子体纳米柱,纳米线或两者的周期阵列,其间距范围从λ/8-2λ,其中λ是光的入射波长除以样品的有效折射率; 耦合等离子体激元阵列传感器具有垂直排列的等离子体偶联纳米线,纳米线或两者的周期性阵列,具有足以引起来自相邻纳米颗粒的等离子体湮灭场之间的重叠的颗粒间隙,通常需要小于20nm的边缘对边缘分离; 以及等离子体光子阵列传感器,其具有1至25个等离子体激元耦合的纳米线,纳米线或两者的双谐振周期性阵列的垂直排列的子阵列,其中子阵列以波长的顺序周期性地间隔开。