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Updated: Jun 16, 2026

A Multimodal Wide-Field Fourier-Transform Raman Microscope
Published on: December 30, 2025
Double-beam high resolution Fourier spectrometer for the far infrared
A novel double-beam Michelson-type Fourier spectrometer was constructed and evaluated. This instrument achieves high resolution and accuracy for far-infrared spectroscopy, demonstrated by recording pure rotational spectra of water and carbon monoxide.
Area of Science:
- Spectroscopy
- Far-infrared spectroscopy
- Molecular spectroscopy
Background:
- Fourier transform spectroscopy is a powerful technique for molecular analysis.
- High-resolution instruments are crucial for resolving fine spectral features.
- The far-infrared region provides unique information about molecular rotations.
Purpose of the Study:
- To describe the construction of a new double-beam Michelson-type Fourier spectrometer.
- To evaluate the performance of this novel spectrometer.
- To demonstrate its capabilities using molecular rotational spectra.
Main Methods:
- Construction of a double-beam Michelson-type Fourier spectrometer.
- Utilizing a Helium-Neon (He-Ne) gas laser for precise optical path difference measurement.
- Recording pure rotational spectra of water (H2O) and carbon monoxide (CO).
Main Results:
- The spectrometer operates in the 10-450 cm(-1) wavenumber range.
- Achieved maximum resolution of 0.025 cm(-1).
- Frequency accuracy within +/-0.001 cm(-1).
Conclusions:
- The constructed double-beam Michelson-type Fourier spectrometer performs effectively.
- The instrument is suitable for high-resolution far-infrared spectroscopic studies.
- Demonstrated utility for analyzing molecular rotational transitions.
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