Terahertz Frequency-Domain Spectroscopy of Low-Pressure Acetonitrile Gas by a Photomixing Terahertz Synthesizer Referenced to Dual Optical Frequency Combs
A terahertz (THz) frequency synthesizer based on photomixing of two near-infrared lasers with a sub-THz to THz frequency offset is a powerful tool for spectroscopy of polar gas molecules due to its broad spectral coverage; however, its frequency accuracy and resolution are relatively low. To tune th...
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Veröffentlicht in: | Journal of infrared, millimeter and terahertz waves millimeter and terahertz waves, 2016-09, Vol.37 (9), p.903-915 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A terahertz (THz) frequency synthesizer based on photomixing of two near-infrared lasers with a sub-THz to THz frequency offset is a powerful tool for spectroscopy of polar gas molecules due to its broad spectral coverage; however, its frequency accuracy and resolution are relatively low. To tune the output frequency continuously and widely while maintaining its traceability to a frequency standard, we developed a photomixing THz synthesizer phase-locked to dual optical frequency combs (OFCs). While the phase-locking to dual OFCs ensured continuous tuning within a spectral range of 120 GHz, in addition to the traceability to the frequency standard, use of a broadband uni-traveling carrier photodiode for photomixing enabled the generation of CW-THz radiation within a frequency range from 0.2 to 1.5 THz. We demonstrated THz frequency-domain spectroscopy of gas-phase acetonitrile CH
3
CN and its isotope CH
3
13
CN in the frequency range of 0.600–0.720 THz using this THz synthesizer. Their rotational transitions were assigned with a frequency accuracy of 8.42 × 10
−8
and a frequency resolution of 520 kHz. Furthermore, the concentration of the CH
3
CN gas at 20 Pa was determined to be (5.41 ± 0.05) × 10
14
molecules/cm
3
by curve fitting analysis of the measured absorbance spectrum, and the mixture ratio of the mixed CH
3
CN/CH
3
13
CN gas was determined to be 1:2.26 with a gas concentration of 10
14
–10
15
molecules/cm
3
. The developed THz synthesizer is highly promising for high-precision THz-FDS of low-pressure molecular gases and will enable the qualitative and quantitative analyses of multiple gases. |
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ISSN: | 1866-6892 1866-6906 |
DOI: | 10.1007/s10762-016-0277-6 |