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首页> 外文期刊>Optics and Spectroscopy >Isotope Selective Control over Clustering of SF6 Molecules and Dissociation of (SF6)(m)Ar-n van der Waals Clusters Using an IR Laser
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Isotope Selective Control over Clustering of SF6 Molecules and Dissociation of (SF6)(m)Ar-n van der Waals Clusters Using an IR Laser

机译:同位素选择性控制SF6分子的聚类和使用IR激光的(SF6)(M)AR-N van der WALS簇的解离

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摘要

We present the results of an investigation into the interaction of SF6 molecules and clusters in a molecular beam with resonant IR laser radiation at different stages of the beam evolution along the axis of its propagation. The beam has been formed as a result of gas-dynamic expansion of a mixture of SF6 with argon carrier gas during expansion from a pulsed nozzle. The experimental setup and the investigation method are described. It has been shown that selective vibrational excitation of SF6 molecules with a specific sulfur isotope by a CO2 laser near the nozzle edge causes suppression of the clustering process of these isotopic molecules. Selective IR excitation of clusters under the conditions of the formed cluster beam leads to isotopically selective dissociation of clusters. Depending on the experimental conditions including different distances of the irradiation zone of particles from the nozzle edge, the results of measuring the efficiency and selectivity of molecular clustering suppression and cluster dissociation processes are presented. It has been shown that both of these processes make it possible to achieve high selectivity values for the S-32 and S-34 sulfur isotopes. In the case in which the clustering of SF6 molecules was selectively suppressed, selectivity values alpha >= 25-30 have been obtained. Upon selective dissociation of (SF6)(2) dimers under similar expansion conditions of the gas mixture, selectivity values alpha >= 20-25 for (SF6SF6)-S-32-S-32 dimers with respect to (SF6SF6)-S-34-S-32 dimers have been obtained. Particular attention has been paid to measurements at a high dilution of SF6 in argon under conditions of predominant formation of (SF6)(m)Ar-n mixed clusters. The potential of using studied processes as a basis for the technology of the laser isotope separation are discussed.
机译:我们介绍了SF6分子和簇在分子梁中的相互作用的研究结果,其在横梁沿其传播轴的不同阶段处具有共振IR激光辐射。由于在从脉冲喷嘴的膨胀期间形成SF6的混合物的SF6混合物的气体动态膨胀而形成光束。描述了实验设置和研究方法。已经证明,通过在喷嘴边缘附近的CO2激光器接近具有特定硫同位素的SF6分子的选择性振动激发,导致这些同位素分子的聚类过程抑制。在形成的簇束的条件下选择性IR激发簇导致同位素地选择性解离簇。取决于包括从喷嘴边缘的颗粒的照射区的不同距离的实验条件,提出了测量分子聚类抑制和聚类解离过程的效率和选择性的结果。已经表明,这两个方法使得可以实现S-32和S-34硫同位素的高选择性值。在选择性地抑制SF6分子的聚类的情况下,已经获得了选择性值α> = 25-30。在气体混合物的类似膨胀条件下选择性解离(SF6)(2)二聚体,相对于(SF6SF6)-32-32二聚体的选择性值α> = 20-25α- - 已经获得了34-S-32二聚体。在氩气的高稀释SF6下,在氩气中的测量中,在氩气中的高稀释条件下,在(SF6)AR-N混合簇的条件下,对测量进行了测量。讨论了使用研究过程作为激光同位素分离技术的基础。

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