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 |
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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 |
format | Article |
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By inserting mark trains between two Ag-scattering centers, the near-field signals were further enhanced in a super-resolution near-field structure. 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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.</abstract><doi>10.1143/JJAP.40.1831</doi></addata></record> |
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title | Super-Resolution Near-Field Structure and Signal Enhancement by Surface Plasmons |
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