ジャーナル論文 Field-Effect Plasmonic Transistors Based on Metallic–Semiconducting Carbon Nanotube Junctions
Yufeng Xie (author) (この著者で検索)
;
Kunqi Xu (author) (この著者で検索)
;
Zhenghan Wu (author) (この著者で検索)
;
Cheng Hu (author) (この著者で検索)
;
Saiqun Ma (author) (この著者で検索)
;
Xianliang Zhou (author) (この著者で検索)
;
Zhichun Zhang (author) (この著者で検索)
;
Peiyue Shen (author) (この著者で検索)
;
Yi Chen (author) (この著者で検索)
;
Chengjia Zhang (author) (この著者で検索)
;
Liguo Wang (author) (この著者で検索)
;
Kenji Watanabe (author) (この著者で検索)
ORCID SAMURAI ;
Takashi Taniguchi (author) (この著者で検索)
ORCID SAMURAI ;
Qi Liang (author) (この著者で検索)
;
Guibai Xie (author) (この著者で検索)
;
Seojoo Lee (author) (この著者で検索)
;
Ji-Hun Kang (author) (この著者で検索)
;
Zhiwen Shi (author) (この著者で検索)
コレクション

引用
Yufeng Xie, Kunqi Xu, Zhenghan Wu, Cheng Hu, Saiqun Ma, Xianliang Zhou, Zhichun Zhang, Peiyue Shen, Yi Chen, Chengjia Zhang, Liguo Wang, Kenji Watanabe, Takashi Taniguchi, Qi Liang, Guibai Xie, Seojoo Lee, Ji-Hun Kang, Zhiwen Shi. Field-Effect Plasmonic Transistors Based on Metallic–Semiconducting Carbon Nanotube Junctions. Nano Letters. 2025, 25 (13), 5334-5341. https://doi.org/10.1021/acs.nanolett.5c00221

説明:

(abstract)

Nanophotonic circuits are regarded as a transformative technology that can overcome many challenges faced by electronic circuits, particularly concerning operating frequency limits. However, the development of nanophotonic circuits utilizing plasmons is strongly hampered by the absence of fundamental building blocks such as long-lived deep-subwavelength plasmons, plasmonic waveguides, and field-effect plasmonic transistors (FEPTs). Here, we demonstrate Luttinger-liquid FEPTs based on metallic–semiconducting carbon nanotube junctions. In these devices, the propagation of plasmon waves across the junction can be efficiently controlled by electrostatic gating. Theoretical analysis and numerical simulations indicate that the reflection/transmission of Luttinger-liquid plasmons at junctions can be captured well by the Fresnel equation. This result suggests that the classical Fresnel law persists for Luttinger-liquid plasmons with a reduced dimensionality. Our study not only uncovers the fundamental propagation characteristics of Luttinger-liquid plasmons at junctions but also introduces a new category of FEPTs that could facilitate the development of high-frequency nanophotonic circuits.

権利情報:

  • In Copyright

    This document is the Accepted Manuscript version of a Published Work that appeared in final form in Nano Letters, copyright © 2025 American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see https://doi.org/10.1021/acs.nanolett.5c00221

キーワード: Plasmon, Carbon nanotube, Nanophotonic circuit

刊行年月日: 2025-04-02

出版者: American Chemical Society (ACS)

掲載誌:

  • Nano Letters (ISSN: 15306984) vol. 25 issue. 13 p. 5334-5341

研究助成金:

  • Japan Society for the Promotion of Science 23H02052
  • Ministry of Education, Culture, Sports, Science and Technology
  • National Key Research and Development Program of China 2021YFA1202902
  • National Key Research and Development Program of China 2022YFA1402702
  • National Research Foundation of Korea NRF-2021R1A2C2012617
  • National Research Foundation of Korea NRF-RS-2024-00454528
  • Core Research for Evolutional Science and Technology JPMJCR24A5
  • Japan Society for the Promotion of Science 21H05233
  • National Natural Science Foundation of China 12374292

原稿種別: 著者最終稿 (Accepted manuscript)

MDR DOI:

公開URL: https://doi.org/10.1021/acs.nanolett.5c00221

関連資料:

その他の識別子:

連絡先:

更新時刻: 2026-07-28 15:08:20 +0900

MDRでの公開時刻: 2026-07-28 16:27:17 +0900

ファイル名 サイズ
ファイル名 2025A01055G_Field-Effect Plasmonic Transistors Based on Metallic-Semiconducting Carbon Nanotube Junctions.pdf (サムネイル)
application/pdf
サイズ 1MB 詳細