Dual-oscillator infrared electro-optic sampling with attosecond precision

  • Alexander Weigel
  • , Philip Jacob
  • , Wolfgang Schweinberger
  • , Marinus Huber
  • , Michael Trubetskov
  • , Patrik Karandušovský
  • , Christina Hofer
  • , Theresa Buberl
  • , Tatiana Amotchkina
  • , Maximilian Högner
  • , Daniel Hahner
  • , Philipp Sulzer
  • , Alfred Leitenstorfer
  • , Vladimir Pervak
  • , Ferenc Krausz
  • , Ioachim Pupeza (Corresponding author)

Research output: Contribution to journalArticleAcademicpeer-review

11 Citations (Scopus)

Abstract

Electro-optic sampling of infrared electric fields has set sensitivity and dynamic-range records in broadband molecular vibrational spectroscopy. Yet, in these works, the 1-second-scale single-trace acquisition time leads to intra-scan noise accumulation and restricts the throughput in measurements of multiple samples and of dynamic processes. We present a dual-laser-oscillator approach capturing 2800 mid-infrared waveforms per second by scanning the relative delay between the sampled waveform and the gate pulses using a modulated repetition-frequency lock. The new technique of electro-optic delay tracking (EODT) provides delay calibration with down to few-attosecond precision and provides a general route to high-precision dual-oscillator spectroscopy with picosecond delay ranges. Our work has immediate applications in, e.g., precision electric-field metrology and high-speed biosensing.
Original languageEnglish
Pages (from-to)726-735
JournalOptica
Volume11
Issue number5
DOIs
Publication statusPublished - 20 May 2024
Externally publishedYes

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  • Electric-field molecular fingerprinting to probe cancer

    Kepesidis, K. V., Jacob, P., Schweinberger, W., Huber, M., Feiler, N., Fleischmann, F., Trubetskov, M., Voronina, L., Aschauer, J., Eissa, T., Gigou, L., Karandušovský, P., Pupeza, I., Weigel, A., Azzeer, A., Stief, C. G., Chaloupka, M., Reinmuth, N., Behr, J. & Kolben, T. & 4 others, Harbeck, N., Reiser, M., Krausz, F. & Žigman, M. (Corresponding author), 23 Apr 2025, In: ACS Central Science. 11, 4, p. 560-573 14 p.

    Research output: Contribution to journalArticleAcademicpeer-review

    Open Access
    3 Citations (Scopus)

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