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    • 4. 发明申请
    • ULTRA-EFFICIENT ENERGY CONVERSION DEVICE FOR CONVERTING LIGHT TO ELECTRICITY BY RECTIFYING SURFACE PLASMON POLARITONS
    • 通过修复表面等离子体极化将光转换为电能的超能效转换装置
    • US20110023941A1
    • 2011-02-03
    • US12848128
    • 2010-07-31
    • Leo D. DiDomenico
    • Leo D. DiDomenico
    • H01L31/052H01L31/042
    • H01L31/0522H01L31/0352H01L31/035227H01L31/0543Y02E10/52Y10S977/762Y10S977/948
    • An ultra-efficient device for converting light into electricity has a dielectric medium for input light propagation, a metallic medium having an array of surface-plasmon-polariton (SPP) resonator cavities formed at nano-scale and distributed in the metallic medium below the dielectric-metal interface, each nano-scale resonator cavity having a hollow interior as a metal cathode in which a metal anode is disposed, another metallic medium electrically coupled to the anode, and another dielectric medium insulating the anode medium from the cathode medium. In each cavity, the cathode is shaped, dimensioned and spaced from the anode so that standing waves of SPP excitations generated by the input light cause quantum field emission of electrons to be rectified as an electrical output. The SPP resonator cavities may be formed in a plurality of diametral sizes corresponding to component light wavelengths to allow full spectrum energy conversion of broadband light input. High energy conversion efficiencies up to a theoretical maximum of 84% can be obtained.
    • 用于将光转换成电的超高效器件具有用于输入光传播的介质介质,具有纳米级形成并分布在电介质下方的金属介质中的表面等离子体激元(SPP)谐振腔的阵列的金属介质 金属接口,每个纳米级谐振腔具有中空内部作为其中设置有金属阳极的金属阴极,另一金属介质与阳极电耦合,另一介电介质将阳极介质与阴极介质隔离。 在每个空腔中,阴极的形状,尺寸和与阳极间隔开,使得由输入光产生的SPP激发的驻波使电子的量子场发射被整流作为电输出。 SPP谐振器腔可以形成为对应于分量光波长的多个直径尺寸,以允许宽带光输入的全频谱能量转换。 可以获得达到理论最大值84%的高能量转换效率。
    • 5. 发明授权
    • Ultra-efficient energy conversion device for converting light to electricity by rectifying surface plasmon polaritons
    • 通过整流表面等离子体激元将光转换为电能的超高效能量转换装置
    • US08866000B2
    • 2014-10-21
    • US12848128
    • 2010-07-31
    • Leo D. DiDomenico
    • Leo D. DiDomenico
    • H01L31/00H01L31/042H01L31/052H01L31/0352
    • H01L31/0522H01L31/0352H01L31/035227H01L31/0543Y02E10/52Y10S977/762Y10S977/948
    • An ultra-efficient device for converting light into electricity has a dielectric medium for input light propagation, a metallic medium having an array of surface-plasmon-polariton (SPP) resonator cavities formed at nano-scale and distributed in the metallic medium below the dielectric-metal interface, each nano-scale resonator cavity having a hollow interior as a metal cathode in which a metal anode is disposed, another metallic medium electrically coupled to the anode, and another dielectric medium insulating the anode medium from the cathode medium. In each cavity, the cathode is shaped, dimensioned and spaced from the anode so that standing waves of SPP excitations generated by the input light cause quantum field emission of electrons to be rectified as an electrical output. The SPP resonator cavities may be formed in a plurality of diametral sizes corresponding to component light wavelengths to allow full spectrum energy conversion of broadband light input. High energy conversion efficiencies up to a theoretical maximum of 84% can be obtained.
    • 用于将光转换成电的超高效器件具有用于输入光传播的介质介质,具有纳米级形成并分布在电介质下方的金属介质中的表面等离子体激元(SPP)谐振腔的阵列的金属介质 金属接口,每个纳米级谐振腔具有中空内部作为其中设置有金属阳极的金属阴极,另一金属介质与阳极电耦合,另一介电介质将阳极介质与阴极介质隔离。 在每个空腔中,阴极的形状,尺寸和与阳极间隔开,使得由输入光产生的SPP激发的驻波使电子的量子场发射被整流作为电输出。 SPP谐振器腔可以形成为对应于分量光波长的多个直径尺寸,以允许宽带光输入的全频谱能量转换。 可以获得达到理论最大值84%的高能量转换效率。