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首页> 外文期刊>The Journal of Chemical Physics >SPECTROSCOPIC CHARACTERIZATION OF THE METASTABLE 3P-PI 3-PI(0+,0-) VALENCE STATES AND THE 4S(3)SIGMA(+) RYDBERG STATES OF THE MGKR AND MGXE VAN-DER-WAALS MOLECULES
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SPECTROSCOPIC CHARACTERIZATION OF THE METASTABLE 3P-PI 3-PI(0+,0-) VALENCE STATES AND THE 4S(3)SIGMA(+) RYDBERG STATES OF THE MGKR AND MGXE VAN-DER-WAALS MOLECULES

机译:MGKR和MGXE范德华分子的亚稳3P-PI 3-PI(0 +,0-)价态和4S(3)SIGMA(+)RYDBERG态的光谱表征

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The first metastable valence excited states and the first Rydberg states of the MgKr and MgXe molecules have been characterized by resonance two-photon photoionization (R2PI) spectroscopy. The Mg(3s3p(3)P(j)).RG((II0+,0-)-I-3) metastable states, produced by expanding the products of a laser-ablated magnesium rod in Kr/Ar or Xe/Ar gas mixtures into a supersonic expansion, were excited by a dye laser pulse to several vibrational levels of the Mg(3s4s S-3(1)).RG((3) Sigma(+)) Rydberg states, with detection by ionization with a second dye laser pulse. Spectroscopic constants, bond energies, and bond lengths are reported for both states of MgKr and MgXe. The (3) Sigma(+) Rydberg states are much more strongly bound than the lower (II0-)-I-3 valence states, and in fact are essentially as strongly bound as the ground states of the analogous MgRG(+) ions, characterized previously in the same apparatus. This clearly indicates that the RG atoms can readily penetrate the diffuse Mg(4s) Rydberg electron cloud. The interesting and unusual spin-orbit and ''spin-spin'' effects observed are attributed to mixing of some RG character into wave functions of predominantly Mg* excited state character. Bonding and spin-orbit interactions in the MgAr, MgKr, and MgXe first triplet metastable and Rydberg states are discussed. (C) 1997 American Institute of Physics. [References: 42]
机译:MgKr和MgXe分子的第一亚稳态价激发态和第一Rydberg态已通过共振双光子光电离(R2PI)光谱进行了表征。 Mg(3s3p(3)P(j))。RG((II0 +,0-)-I-3)亚稳态,是通过在Kr / Ar或Xe / Ar气体中扩展激光烧蚀镁棒的产物而产生的混合物变成超音速膨胀,被染料激光脉冲激发到Mg(3s4s S-3(1))。RG((3)Sigma(+))Rydberg态的几个振动水平,并通过第二次电离检测染料激光脉冲。报告了MgKr和MgXe两种状态的光谱常数,键能和键长。 (3)Sigma(+)Rydberg态比低(II0-)-I-3价态的结合力强得多,并且实际上与类似MgRG(+)离子的基态一样牢固地结合,以前在同一设备中具有特征。这清楚地表明,RG原子可以很容易地穿透弥散的Mg(4s)Rydberg电子云。观察到的有趣且不寻常的自旋轨道和“自旋-自旋”效应归因于一些RG特性混入了主要为Mg *激发态特性的波动函数中。讨论了MgAr,MgKr和MgXe第一三重态亚稳态和Rydberg态的键合和自旋轨道相互作用。 (C)1997美国物理研究所。 [参考:42]

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