Wavelength modulation laser spectroscopy of NO at 17 m
arXiv:2410.22328 · doi:10.1088/1367-2630/adb778
Abstract
Using a mid-infrared quantum cascade laser and wavelength modulation absorption spectroscopy, we measure the frequencies of ro-vibrational transitions of NO in the 17 m region with uncertainties below 5 MHz. These lines, corresponding to the bending mode of the molecule, can be used for calibration of spectrometers in this spectral region. We present a model for the lineshapes of absorption features in wavelength modulation spectroscopy that takes into account Doppler broadening, collisional broadening, saturation of the absorption, and lineshape distortion due to frequency and intensity modulation. Combining our data with previous measurements, we provide a set of spectroscopic parameters for several vibrational states of NO. The lines measured here fall in the same spectral region as a mid-infrared frequency reference that we are currently developing using trapped, ultracold molecules. With such a frequency reference, the spectroscopic methods demonstrated here have the potential to improve frequency calibration in this part of the spectrum.
33 pages, 8 figures. Added energy level diagram, improved analysis of uncertainties, further details of fitting methods and uncertainty analysis added to appendix
References in corpus (10)
- Quantum cascade laser frequency stabilisation at the sub-Hz level
- Laser cooled molecules
- Measuring the stability of fundamental constants with a network of clocks
- A widely tunable 10-m quantum cascade laser phase-locked to a state-of-the-art mid-infrared reference for precision molecular spectroscopy
- A new experiment to test parity symmetry in cold chiral molecules using vibrational spectroscopy
- A terahertz vibrational molecular clock with systematic uncertainty at the level
- A quantum cascade laser-based mid-IR frequency metrology system with ultra-narrow linewidth and -level frequency instability
- HCOOH high resolution spectroscopy in the 9.18m region
- Linear probing of molecules at micrometric distances from a surface with sub-Doppler frequency resolution
- Near-to mid-IR spectral purity transfer with a tunable frequency comb: methanol frequency metrology over a record frequency span