We report a metrological-grade THz spectroscopy based on the combination of a THz frequency-comb synthesizer (FCS) and a THz quantum cascade laser (QCL). The QCL, emitting at 2.5 THz, is phase locked to the free-space THz FCS, and its frequency is swept across a methanol transition by tuning the combrepetition rate, which is ultimately disciplined by the Cs primary frequency standard. The absolute frequency scale provides an uncertainty of a few parts in 10^−11 on the laser frequency and 10^−9 on the linecenter determination, ranking this technique among the most precise ever developed in the THz range.
Frequency-Comb-Assisted Terahertz Quantum Cascade Laser Spectroscopy / S. Bartalini, L. Consolino, P. Cancio, P. De Natale, P. Bartolini, A. Taschin, M. De Pas, H. Beere, D. Ritchie, M. S. Vitiello, R. Torre. - In: PHYSICAL REVIEW. X. - ISSN 2160-3308. - ELETTRONICO. - 4:(2014), pp. 021006-1-021006-7. [10.1103/PhysRevX.4.021006]
Frequency-Comb-Assisted Terahertz Quantum Cascade Laser Spectroscopy
BARTOLINI, PAOLO;TASCHIN, ANDREA;DE PAS, MARCO;TORRE, RENATO
2014
Abstract
We report a metrological-grade THz spectroscopy based on the combination of a THz frequency-comb synthesizer (FCS) and a THz quantum cascade laser (QCL). The QCL, emitting at 2.5 THz, is phase locked to the free-space THz FCS, and its frequency is swept across a methanol transition by tuning the combrepetition rate, which is ultimately disciplined by the Cs primary frequency standard. The absolute frequency scale provides an uncertainty of a few parts in 10^−11 on the laser frequency and 10^−9 on the linecenter determination, ranking this technique among the most precise ever developed in the THz range.| File | Dimensione | Formato | |
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