跳至主導覽 跳至搜尋 跳過主要內容

Highly-efficient electrically-driven localized surface plasmon source enabled by resonant inelastic electron tunneling

  • Haoliang Qian
  • , Shilong Li
  • , Su Wen Hsu
  • , Ching Fu Chen
  • , Fanglin Tian
  • , Andrea R. Tao
  • , Zhaowei Liu

研究成果: Article同行評審

39   連結會在新分頁中開啟 引文 斯高帕斯(Scopus)

摘要

On-chip plasmonic circuitry offers a promising route to meet the ever-increasing requirement for device density and data bandwidth in information processing. As the key building block, electrically-driven nanoscale plasmonic sources such as nanoLEDs, nanolasers, and nanojunctions have attracted intense interest in recent years. Among them, surface plasmon (SP) sources based on inelastic electron tunneling (IET) have been demonstrated as an appealing candidate owing to the ultrafast quantum-mechanical tunneling response and great tunability. However, the major barrier to the demonstrated IET-based SP sources is their low SP excitation efficiency due to the fact that elastic tunneling of electrons is much more efficient than inelastic tunneling. Here, we remove this barrier by introducing resonant inelastic electron tunneling (RIET)—follow a recent theoretical proposal—at the visible/near-infrared (NIR) frequencies and demonstrate highly-efficient electrically-driven SP sources. In our system, RIET is supported by a TiN/Al2O3 metallic quantum well (MQW) heterostructure, while monocrystalline silver nanorods (AgNRs) were used for the SP generation (localized surface plasmons (LSPs)). In principle, this RIET approach can push the external quantum efficiency (EQE) close to unity, opening up a new era of SP sources for not only high-performance plasmonic circuitry, but also advanced optical sensing applications.

原文English
文章編號3111
期刊Nature communications
12
發行號1
DOIs
出版狀態Published - 2021 12月 1

All Science Journal Classification (ASJC) codes

  • 一般化學
  • 一般生物化學,遺傳學和分子生物學
  • 一般物理與天文學

指紋

深入研究「Highly-efficient electrically-driven localized surface plasmon source enabled by resonant inelastic electron tunneling」主題。共同形成了獨特的指紋。

引用此