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Fabrication of chiral plasmonic nanogaps by hot electron-induced metal growth for enhanced enantioselective light-matter interactions

研究課題

研究課題/領域番号 23K23191
補助金の研究課題番号 22H01923 (2022-2023)
研究種目

基盤研究(B)

配分区分基金 (2024)
補助金 (2022-2023)
応募区分一般
審査区分 小区分28050:ナノマイクロシステム関連
研究機関沖縄科学技術大学院大学 (2024)
北海道大学 (2022-2023)

研究代表者

Pin Christophe  沖縄科学技術大学院大学, 量子技術のための光・物質相互作用ユニット, スタッフサイエンティスト (50793767)

研究期間 (年度) 2022-04-01 – 2025-03-31
研究課題ステータス 交付 (2024年度)
配分額 *注記
14,950千円 (直接経費: 11,500千円、間接経費: 3,450千円)
2024年度: 2,340千円 (直接経費: 1,800千円、間接経費: 540千円)
2023年度: 2,210千円 (直接経費: 1,700千円、間接経費: 510千円)
2022年度: 10,400千円 (直接経費: 8,000千円、間接経費: 2,400千円)
キーワードplasmonics / nanogap / chirality / enantioselectivity / hot electron
研究開始時の研究の概要

The light-induced growth of gold nanoparticles is investigated to fabricate gold nanostructures with a twisted nanogap. The purpose of this project is the study of the interaction between such twisted gold nanostructures and molecules with twisted shapes. The goal is to induce and measure some asymmetry in this interaction depending on how twisted are the gold nanostructure and the molecules.

研究実績の概要

An analytical model was developed to calculate the spatial distribution of the spin and orbital momentum carried by the electric field near the center of the nanogap of a plasmonic trimer nanoantenna excited either by a Gaussian laser beam or by an optical vortex laser beam. Theoretical analysis based on those results were used to discuss the experimental results obtained by my collaborator Dr. A.-C. Cheng. This work was published earlier this year in the scientific journal Small.
In parallel, numerical simulations were conducted to design plasmonic nanogap antennas that enable orbital angular momentum conversion between the incident light and the electric field in the vicinity of the nanogap. Especially, I designed both resonant and non-resonant antennas that enable the generation of optical nanovortex when irradiated by a circularly polarized plane wave. Those results have been presented at an international conference and some results have been submitted to the conference proceedings. A manuscript is under preparation to submit an article to a peer-reviewed scientific journal.
Based on those previous results, the chiral properties of the electric field in the vicinity of a plasmonic nanogap antenna have been investigated further. Especially, I numerically demonstrated the existence of nanoscale skyrmion patterns in the spin angular momentum texture of the electric field near the nanogap of plasmonic multimer antenna irradiated by a circularly polarized plane wave. This result may lead to new techniques to optically generate or control magnetic spin skyrmions.

現在までの達成度 (区分)
現在までの達成度 (区分)

3: やや遅れている

理由

Due to some difficulties in the fabrication of gold nanostructures with a chiral nanogap and in the spectroscopic measurement of the fluorescence emission of chiral fluorophores, new directions are being investigated to explore chiral light-matter interactions using plasmonic nanogap antennas. Some results about the spin and orbital angular momentum of the nanogap electric field have been published, and another research article is under preparation to report on the design of plasmonic multimer antennas that enable the generation of optical nanovortex when irradiated by a circularly polarized plane wave.
Due to my recent move from Hokkaido University to the Okinawa Institute of Science and Technology, a new experimental setup is currently under construction.

今後の研究の推進方策

Further experiments will be performed to investigate the fabrication of gold nanostructures with a chiral nanogap on a silicon substrate. Plasmonic nanogap antenna that enable the generation of optical nanovortex when irradiated by a circularly polarized plane wave will be also fabricated and, if possible, characterized by near-field optical microscopy technique. However, during the upcoming year, the fabrication of gold nanostructures by electron-beam lithography may require further usage of the cleanroom facility of the Research Institute for Electronic Science in Hokkaido University.
Spectroscopic measurements of the fluorescence properties of chiral fluorophores will be also further investigated.

報告書

(1件)
  • 2022 実績報告書
  • 研究成果

    (10件)

すべて 2024 2023

すべて 雑誌論文 (5件) (うち国際共著 5件、 査読あり 4件、 オープンアクセス 3件) 学会発表 (5件) (うち国際学会 2件)

  • [雑誌論文] Nanoscale Helical Optical Force for Determining Crystal Chirality2024

    • 著者名/発表者名
      Cheng An‐Chieh、Pin Christophe、Sunaba Yuji、Sugiyama Teruki、Sasaki Keiji
    • 雑誌名

      Small

      巻: - 号: 34 ページ: 2312174-2312174

    • DOI

      10.1002/smll.202312174

    • 関連する報告書
      2022 実績報告書
    • 査読あり / 国際共著
  • [雑誌論文] Enantioselectivity in Chiral Crystallization Driven by the Canonical and Spin Momentum Forces of Optical Vortex Beams2024

    • 著者名/発表者名
      Cheng An-Chieh、Pin Christophe、Sugiyama Teruki、Sasaki Keiji
    • 雑誌名

      The Journal of Physical Chemistry C

      巻: 128 号: 10 ページ: 4314-4320

    • DOI

      10.1021/acs.jpcc.3c08424

    • 関連する報告書
      2022 実績報告書
    • 査読あり / オープンアクセス / 国際共著
  • [雑誌論文] Site-Specific Synthesis of Conductive Graphitic Nanomaterials on a NiFe Thin Film by Localized Laser Irradiation2023

    • 著者名/発表者名
      Fujiwara Hideki、Daikokuya Seigo、Mirokuin Tatsuki、Hayashi Kyohei、Matsuzaka Mizuki、Ohashi Yuri、Pin Christophe、Kaiju Hideo、Hirai Kenji、Uji-i Hiroshi
    • 雑誌名

      ACS Applied Nano Materials

      巻: 6 号: 15 ページ: 13885-13893

    • DOI

      10.1021/acsanm.3c01272

    • 関連する報告書
      2022 実績報告書
    • 査読あり / オープンアクセス / 国際共著
  • [雑誌論文] Nano-shaping of chiral photons2023

    • 著者名/発表者名
      Sunaba Yuji、Ide Masaki、Takei Ryo、Sakai Kyosuke、Pin Christophe、Sasaki Keiji
    • 雑誌名

      Nanophotonics

      巻: 12 号: 13 ページ: 2499-2506

    • DOI

      10.1515/nanoph-2022-0779

    • 関連する報告書
      2022 実績報告書
    • 査読あり / オープンアクセス / 国際共著
  • [雑誌論文] Shaping of multimer plasmonic fields with fractional angular momentum2023

    • 著者名/発表者名
      Sunaba Yuji、Pin Christophe、Sasaki Keiji
    • 雑誌名

      Proceedings SPIE

      巻: 12606 ページ: 48-48

    • DOI

      10.1117/12.3008381

    • 関連する報告書
      2022 実績報告書
    • 国際共著
  • [学会発表] Plasmonic nanogap optical vortex excitation via spin-to-orbital angular momentum conversion2024

    • 著者名/発表者名
      Pin Christophe, Sasaki Keiji
    • 学会等名
      SPIE Structured Light 2024, 11th Optical Manipulation and Structured Materials
    • 関連する報告書
      2022 実績報告書
    • 国際学会
  • [学会発表] Angular momentum conversion using plasmonic multimer nanostructures2024

    • 著者名/発表者名
      Pin Christophe, Sunaba Yuji, Sasaki Keiji
    • 学会等名
      第4回光渦研究会
    • 関連する報告書
      2022 実績報告書
  • [学会発表] Topological properties of plasmonic multimer nanostructures2023

    • 著者名/発表者名
      Pin Christophe, Sasaki Keiji
    • 学会等名
      Optics & Photonics Japan 2023, Joint Symposia on Optics
    • 関連する報告書
      2022 実績報告書
  • [学会発表] Plasmonic edge states in multimer nanostructures2023

    • 著者名/発表者名
      Pin Christophe, Sasaki Keiji
    • 学会等名
      第84回応用物理学会秋季講演会
    • 関連する報告書
      2022 実績報告書
  • [学会発表] Shaping of multimer plasmonic fields with fractional angular momentum2023

    • 著者名/発表者名
      Sunaba Yuji, Pin Christophe, Sasaki Keiji
    • 学会等名
      SPIE Structured Light 2023, 10th Optical Manipulation and Structured Materials
    • 関連する報告書
      2022 実績報告書
    • 国際学会

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公開日: 2022-04-19   更新日: 2024-12-25  

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