PROPAGATION OF LOW-FREQUENCY PLASMONS AND e-h EXCITATIONS

Chiun Yan Lin, Ching Hong Ho, Lu Yao Wang, Chih Wei Chiu, Hsien Ching Chung, Min-Fa Lin

研究成果: Chapter

摘要

Over the past year, research on the dynamic behavior of quasiparticles using ultrafast spectroscopy has become a major topic in solid-state physics [1-12]. By utilizing ultrafast laser pulses, researchers have been able to generate and monitor the dynamic oscillations of electrons. The integration of ultrafast laser pulse technology with scanning tunneling microscopy (STM) has led to the development of a new microscopy technique that allows for the real-space imaging of transient carrier dynamics in nanostructures [10, 11]. Coherent nanoimaging and nanospectroscopy have also observed ultrafast coherent dynamics and related nanoscale phenomena with nanometer and femtosecond temporal resolutions [11, 13-15]. With the advent of near-field optical microscopes, there has been an increased interest in the real-space and time propagation of plasmons [13-16]. The Fourier transform STM provides a method to determine the Fermi surface directly by measuring standing-wave patterns around defects in a metal [17-19]. Efficiently converting the transient carrier response into measurable electrical signals is crucial for realizing the dynamic properties of quasiparticles governed by single-particle or collective excitations. Plasmon oscillations in conducting materials can produce large optical field confinement and enhancement, highlighting their potential for practical applications….

原文English
主出版物標題Rich Quasiparticle Properties in Layered Graphene-related Systems
發行者World Scientific Publishing Co.
頁面163-195
頁數33
ISBN(電子)9789811277795
ISBN(列印)9789811277788
DOIs
出版狀態Published - 2023 1月 1

All Science Journal Classification (ASJC) codes

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

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