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February 25, 2026AIP Advances0 citationsOpen Access

Enhancing the emission from trilayer spintronic terahertz emitters by Cu alloying

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CBC. BullRJRuidong JiTGT. A. Gething

Key Points

  • The aim is to optimize the amplitude of terahertz electric fields from spintronic emitters by alloying with copper.
  • Investigation of Cu alloying in trilayer W/CoFeB/Pt emitters.
  • Comparison made with trilayer without Cu and CoFeB/Pt bilayer emitters.
  • Measurement of terahertz electric field amplitudes in various configurations.
  • THz emission increased by ∼27% with Cu alloying compared to trilayer without Cu.
  • THz emission increased by ∼61% compared to CoFeB/Pt bilayer emitter.
  • Cu alloying in the metallic layer leads to significant enhancement in emission.

Abstract

Recent interest in spintonic terahertz (THz) emitters has been driven by their simplicity, low cost and ability to generate high electric field amplitudes over a broad, gapless spectral bandwidth. Here we report on strategies to optimize the amplitude of THz electric fields from spintronic emitters. Specifically, we explore the effect of Cu alloying on the emission from trilayer, W/CoFeB/Pt, emitters. By introducing Cu into both the W and Pt layers we show a significant increase in emission of ∼27% compared to a trilayer without Cu, and an increase of ∼61% compared to a CoFeB/Pt bilayer emitter. These results demonstrate significant potential for improved THz emission by optimizing the metallic layer via alloying with Cu.

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Cite This Study

Bull et al. (2026) studied this question.

synapsesocial.com/papers/699e9143f5123be5ed04ea74https://doi.org/10.1063/9.0001020
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