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首页> 外文期刊>New journal of physics >High-resolution mid-infrared spectroscopy of buffer-gas-cooled methyltrioxorhenium molecules
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High-resolution mid-infrared spectroscopy of buffer-gas-cooled methyltrioxorhenium molecules

机译:缓冲气体冷却的甲基三氧or鎓分子的高分辨率中红外光谱

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We demonstrate cryogenic buffer-gas cooling of gas-phase methyltrioxorhenium (MTO). This molecule is closely related to chiral organometallic molecules where the parity-violating energy differences between enantiomers is measurable. The molecules are produced with a rotational temperature of approximately 6 K by laser ablation of an MTO pellet inside a cryogenic helium buffer gas cell. Facilitated by the low temperature, we demonstrate absorption spectroscopy of the 10.2 μm antisymmetric Re=O stretching mode of MTO with a resolution of 8 MHz and a frequency accuracy of 30 MHz. We partially resolve the hyperfine structure and measure the nuclear quadrupole coupling of the excited vibrational state. Our ability to produce dense samples of complex molecules of this type at low temperatures represents a key step towards a precision measurement of parity violation in a chiral species.
机译:我们展示了气相甲基三氧or(MTO)的低温缓冲气体冷却。该分子与手性有机金属分子密切相关,在手性有机金属分子中,可测量对映异构体之间违反平价的能量差。通过激光烧蚀低温氦气缓冲气室内的MTO团块,以大约6 K的旋转温度产生分子。受低温的影响,我们展示了MTO的10.2μm反对称Re = O拉伸模式的吸收光谱,分辨率为8 MHz,频率精度为30 MHz。我们部分解析了超精细结构,并测量了激发振动态的核四极耦合。我们能够在低温下生产这种类型的复杂分子的致密样品的能力,代表了朝着精确测量手性物种中的奇偶性违反迈出的关键一步。

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