Arellano Guadalupe Garcia, de Aquino Carvalho Joao Carlos, Mouhanna Hippolyte, Butery Esther, Billeton Thierry, Du-Burck Frederic, Darquié Benoit, Maurin Isabelle, Laliotis Athanasios
Laboratoire de Physique des Lasers, Université Sorbonne Paris Nord, F-93430, Villetaneuse, France.
CNRS, UMR 7538, LPL, 99 Avenue J.-B. Clément, F-93430, Villetaneuse, France.
Nat Commun. 2024 Feb 29;15(1):1862. doi: 10.1038/s41467-024-45830-x.
Miniaturizing and integrating atomic vapor cells is widely investigated for the purposes of fundamental measurements and technological applications such as quantum sensing. Extending such platforms to the realm of molecular physics is a fascinating prospect that paves the way for compact frequency metrology as well as for exploring light-matter interactions with complex quantum objects. Here, we perform molecular rovibrational spectroscopy in a thin-cell of micrometric thickness, comparable to excitation wavelengths. We operate the cell in two distinct regions of the electromagnetic spectrum, probing ν + ν resonances of acetylene at 1.530 µm, within the telecommunications wavelength range, as well as the ν and ν resonances of SF and NH respectively, in the mid-infrared fingerprint region around 10.55 µm. Thin-cell confinement allows linear sub-Doppler transmission spectroscopy due to the coherent Dicke narrowing effect, here demonstrated for molecular rovibrations. Our experiment can find applications extending to the fields of compact molecular frequency references, atmospheric physics or fundamental precision measurements.
为了诸如量子传感等基础测量和技术应用的目的,原子蒸气室的小型化和集成化得到了广泛研究。将此类平台扩展到分子物理领域是一个令人着迷的前景,为紧凑型频率计量以及探索与复杂量子物体的光与物质相互作用铺平了道路。在此,我们在厚度与激发波长相当的微米级薄细胞中进行分子振转光谱研究。我们在电磁光谱的两个不同区域操作该细胞,在电信波长范围内探测乙炔在1.530 µm处的ν + ν共振,以及分别在约10.55 µm的中红外指纹区域探测SF和NH的ν和ν共振。由于相干狄克窄化效应,薄细胞限制允许进行线性亚多普勒透射光谱研究,此处展示了分子振转的情况。我们的实验可在紧凑型分子频率参考、大气物理或基础精密测量等领域找到应用。