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THE ROTATIONAL SPECTRUM OF SH AND SD

机译:SH和SD的旋转光谱

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With the Cologne terahertz spectrometer, the lower J rotational spectrum of the SD radical has been detected for the first time in the laboratory, in analogy with our previous recent detection of the SH radical. The radicals were produced by discharging H_2S (D_2S) buffered with He and H_2 (D_2). The spectra were analyzed employing Hund's case (a) coupling scheme. The SH radical has an inverted ~2Π state, as does OH, so that the ~2Π_(2/3) state is the energetically lower one. For both SH and SD, the rotational and centrifugal distortion constants, the spin orbit, the spin rotation, the Λ-doublet, and the hyperfine interaction constants were determined by combining the newly acquired experimental data with those available in the literature. The rotational constant B_0 for SD is 146885.297 (26) MHz, while our latest value for SH is 283587.62 (12) MHz (the values in parentheses denote the calculated, uncertainty obtained by a least-squares fit). The SH radical and its deuterated isotopomer may be detectable in interstellar space because of the high cosmic abundance of elemental sulfur and the high abundance of H_2S. Since the ~2Π_(1/2) electronic state lies nearly 400 cm~(-1) above the ~2Π_(3/2) state, the rotational transitions in the ~2Π_(1/2) state should only be detectable in hot interstellar sources, and they are potentially good indicators of star formation.
机译:使用科隆太赫兹光谱仪,我们在实验室中首次检测到了SD自由基的较低J旋转光谱,这与我们之前对SH自由基的检测相似。通过释放由He和H_2(D_2)缓冲的H_2S(D_2S)产生自由基。使用Hund的情况(a)耦合方案分析光谱。 SH自由基与OH一样具有相反的〜2Π状态,因此〜2Π_(2/3)状态在能量上较低。对于SH和SD,通过将新获得的实验数据与文献中的数据相结合,确定了旋转和离心变形常数,自旋轨道,自旋旋转,Λ-双峰和超精细相互作用常数。 SD的旋转常数B_0为146885.297(26)MHz,而我们对SH的最新值为283587.62(12)MHz(括号中的值表示通过最小二乘拟合获得的计算出的不确定性)。由于原子硫的高宇宙丰度和H_2S的高丰度,SH自由基及其氘代的同位素异构体可能在星际空间中被检测到。由于〜2Π_(1/2)电子状态比〜2Π_(3/2)状态高约400 cm〜(-1),因此〜2Π_(1/2)状态的旋转跃迁只能在高温下才能检测到星际源,它们是恒星形成的潜在良好指示。

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