Super-Resolution Near-Field Structure and Signal Enhancement by Surface Plasmons

We describe surface plasmon enhancement by near-field interaction with Ag-scattering centers. By inserting mark trains between two Ag-scattering centers, the near-field signals were further enhanced in a super-resolution near-field structure. Observing the enhancement in more detail, it was found th...

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Veröffentlicht in:Japanese Journal of Applied Physics 2001-03, Vol.40 (3S), p.1831
Hauptverfasser: Tominaga, Junji, Kim, Johoo, Fuji, Hiroshi, Büchel, Dorothea, Kikukawa, Takashi, Men, Liqiu, Fukuda, Hisako, Sato, Akira, Nakano, Takashi, Tachibana, Akihiro, Yamakawa, Yuzo, Kumagai, Masashi, Fukaya, Toshio, Atoda, Nobufumi
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container_issue 3S
container_start_page 1831
container_title Japanese Journal of Applied Physics
container_volume 40
creator Tominaga, Junji
Kim, Johoo
Fuji, Hiroshi
Büchel, Dorothea
Kikukawa, Takashi
Men, Liqiu
Fukuda, Hisako
Sato, Akira
Nakano, Takashi
Tachibana, Akihiro
Yamakawa, Yuzo
Kumagai, Masashi
Fukaya, Toshio
Atoda, Nobufumi
description We describe surface plasmon enhancement by near-field interaction with Ag-scattering centers. By inserting mark trains between two Ag-scattering centers, the near-field signals were further enhanced in a super-resolution near-field structure. Observing the enhancement in more detail, it was found that surface plasmons are generated along the mark trains and are dispersed in a range of 1 µm along the marks and 40–50 nm normal to the multilayer stack.
doi_str_mv 10.1143/JJAP.40.1831
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title Super-Resolution Near-Field Structure and Signal Enhancement by Surface Plasmons
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