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September 23, 20250 citationsOpen Access

Modulation of sub-optical cycle photocurrents in an ultrafast near-infrared scanning tunnelling microscope

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ARAndrea RossettiFPFlorian PagniniMAMajdi Assaid

Key Points

  • Coherent ultrafast currents were generated and detected in scanning tunnelling microscopy, showcasing the technique's potential.
  • The novel modulation scheme effectively reduces thermal loading and enhances the isolation of carrier-envelope phase-dependent photocurrents.
  • All artifacts from periodic laser power modulation and thermal coupling were efficiently suppressed, improving measurements.
  • This advancement enables an unprecedented combination of atomic spatial resolution with temporal resolution near the attosecond scale.

Abstract

Lightwave-driven scanning tunnelling microscopy (STM) at near-IR frequencies promises an unprecedented combination of atomic spatial resolution and temporal resolution approaching the attosecond range. To achieve this goal, high-sensitivity optical control and detection of sub-cycle tunnelling currents must be achieved at the STM junction. Here, we demonstrate the generation and detection of coherent ultrafast currents across the junction of an STM illuminated by near-infrared single-cycle pulses. We introduce a novel modulation scheme that avoids time-dependent thermal loading while selectively isolating carrier-envelope phase (CEP)-dependent photocurrents. All artifacts arising from periodic modulation of laser power and thermal coupling are efficiently suppressed, enabling a clean readout of the coherent portion of the ultrafast tunneling current.

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Cite This Study

Rossetti et al. (2025) studied this question.

synapsesocial.com/papers/68d473bb31b076d99fa6cb92https://doi.org/10.48550/arxiv.2507.16357
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