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Simultaneous Terahertz Pulse Generation and Manipulation with Spintronic Coding Surface

  • Sai Chen
  • , Hanchen Wang
  • , Jingyu Liu
  • , Mingxuan Zhang
  • , Peng Chen
  • , Peiyan Li
  • , Zhongkai Liu
  • , Xiufeng Han
  • , Caihua Wan*
  • , Haiming Yu*
  • , Yan Zhang*
  • , Xiaojun Wu*
  • *Corresponding author for this work
  • Beihang University
  • International Quantum Academy
  • Swiss Federal Institute of Technology Zurich
  • Capital Normal University
  • CAS - Institute of Physics
  • University of Chinese Academy of Sciences
  • ShanghaiTech University
  • ShanghaiTech Laboratory for Topological Physics
  • Songshan Lake Materials Laboratory
  • Zhangjiang Laboratory
  • Huazhong University of Science and Technology

Research output: Contribution to journalArticlepeer-review

Abstract

The utilization of spintronic terahertz (THz) emitters has a significant influence on broadband coherent spectroscopy and imaging at THz frequencies. By using femtosecond light to irradiate the spintronic heterostructures, spin currents from the ultrafast demagnetization effect can be transformed into charge currents through the inverse spin Hall effect, leading to the emission of THz waves. In this work, through the incorporation of sequential and inverse deposition of W-Co20Fe60B20-Pt heterostructure films, control is gained over the spin currents and THz waveforms, enabling it to achieve a 180° phase difference across a broad frequency spectrum while efficiently radiating THz waves. This, in turn, allows it to control the spatial phase of THz radiation. To test the device's capabilities, lithography-based devices capable of focusing, producing vortexes, and dividing beams are manufactured. This investigation aims to advance the development of THz pulse sources while providing essential support for cutting-edge technologies such as THz spectroscopy, high-resolution imaging, and high-speed communications.

Original languageEnglish
Article number2300899
JournalAdvanced Optical Materials
Volume12
Issue number6
DOIs
StatePublished - 23 Feb 2024

Keywords

  • beam splitting
  • focusing
  • spintronics
  • terahertz emissions
  • vortexes

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