Surface plasmon resonance enhanced photoconductivity in Cu nanoparticle films
Ki Youl Yang, Kyung Cheol Choi, Il‐Suk Kang, Chi Won Ahn
Abstract
Ki Youl Yang, Kyung Cheol Choi, Il‐Suk Kang, Chi Won Ahn
Abstract
We describe an all-electrical plasmon detection based on the near field coupling between plasmons and percolating electrons. It is the technique to electrically detect the local field enhancement from randomly distributed Cu nanoparticles coupled to a plasmon resonance. In addition, we revealed that plasmon-sensitivity is maximized at the percolation threshold, the minimum Cu particle surface coverage which can make the percolation path through the particles. Our detectors have a simple structure for easy fabrication and a high level of sensitivity to plasmon resonance.
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We describe an all-electrical plasmon detection based on the near field coupling between plasmons and percolating electrons. It is the technique to electrically detect the local field enhancement from randomly distributed Cu nanoparticles coupled to a plasmon resonance. In addition, we revealed that plasmon-sensitivity is maximized at the percolation threshold, the minimum Cu particle surface coverage which can make the percolation path through the particles. Our detectors have a simple structure for easy fabrication and a high level of sensitivity to plasmon resonance.
Key concepts: Surface plasmon resonance, Plasmon, Surface plasmon, Materials science, Localized surface plasmon, Surface plasmon polariton, Optoelectronics, Photoconductivity