Development of a High-Repetition-Rate Ti:Sa Optical Frequency Comb at INTI for Laser Frequency Traceability and Calibration

We report the development of the first optical frequency comb (OFC) based on an in-house Ti:Sa femtosecond laser in Argentina, implemented at the National Metrology Institute (INTI). The system operates at a 1 GHz repetition rate with a broadband spectrum spanning from 500 to 1100 nm. The carrier-envelope offset frequency and the repetition rate are both phase-locked to a cesium atomic clock, establishing a direct link between the national frequency standard and the optical domain. This development represents a major step forward for national metrology and enables frequency-instability measurements of stable lasers within the country. To demonstrate its capabilities, the performance of a Nd:YAG Mephisto laser at 1064 nm was evaluated by measuring the beat note between its second harmonic and the OFC, allowing a direct assessment of its frequency noise and stability.

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Publication Details

Journal
Metrology
Published
2026-09-22
DOI
https://doi.org/10.3390/metrology6040067
Primary Topic
Advanced Fiber Laser Technologies
Type
article
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article

Development of a High-Repetition-Rate Ti:Sa Optical Frequency Comb at INTI for Laser Frequency Traceability and Calibration

Matias Risaro, J. Codnia, Héctor Laiz, Karina Bastida et al.
Metrology
Advanced Fiber Laser Technologies
article

Development of a High-Repetition-Rate Ti:Sa Optical Frequency Comb at INTI for Laser Frequency Traceability and Calibration

Matias Risaro, J. Codnia, Héctor Laiz, Karina Bastida, Fernando Yapur, Maria del Pilar Campos Marino
article en

Abstract

We report the development of the first optical frequency comb (OFC) based on an in-house Ti:Sa femtosecond laser in Argentina, implemented at the National Metrology Institute (INTI). The system operates at a 1 GHz repetition rate with a broadband spectrum spanning from 500 to 1100 nm. The carrier-envelope offset frequency and the repetition rate are both phase-locked to a cesium atomic clock, establishing a direct link between the national frequency standard and the optical domain. This development represents a major step forward for national metrology and enables frequency-instability measurements of stable lasers within the country. To demonstrate its capabilities, the performance of a Nd:YAG Mephisto laser at 1064 nm was evaluated by measuring the beat note between its second harmonic and the OFC, allowing a direct assessment of its frequency noise and stability.

MetrologyVol. 6(4)
National Physical Laboratory (GB), National University of General San Martín (AR), Universidad de Buenos Aires (AR), National Institute of Industrial Technology (AR), Institute of Scientific and Technical Research for Defense (AR), Ministerio de Defensa (ES), Fundación Ciencias Exactas y Naturales (AR)
Openalex Percentile: Top 13%
Advanced Fiber Laser Technologies
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Development of a High-Repetition-Rate Ti:Sa Optical Frequency Comb at INTI for Laser Frequency Traceability and Calibration — Matias Risaro, J. Codnia, et al. · Metrology (2026) | TGRS Research Map | TGRS