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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Optical and Electron Spin Resonance Studies of Xenon-Nitrogen-Helium Condensates Containing Nitrogen and Oxygen Atoms
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Optical and Electron Spin Resonance Studies of Xenon-Nitrogen-Helium Condensates Containing Nitrogen and Oxygen Atoms

机译:含氮和氧原子的氙-氮-氦冷凝物的光学和电子自旋共振研究

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摘要

We present the first observations of excimer XeO* molecules in molecular nitrogen films surrounding xenon cores of nanoclusters. Multishell nanoclusters form upon the fast cooling of a helium jet containing small admixtures of nitrogen and xenon by cold helium vapor (T = 1.5 K). Such nanoclusters injected into superfluid helium aggregate into porous impurity-helium condensates. Passage of helium gas with admixtures through a radio frequency discharge allows the storage of high densities of radicals stabilized in impurity-helium condensates. Intense recombination of the radicals occurs during destruction of such condensates and generates excited species observable because of optical emission. Rich spectra of xenon-oxygen complexes have been detected upon destruction of xenon-nitrogen-helium condensates. A xenon environment quenches metastable N(D-2) atoms but has a much weaker effect on the luminescence of N(P-2) atoms. Electron spin resonance spectra of N(S-4) atoms trapped in xenon-nitrogen-helium condensates have been studied. High local concentrations of nitrogen atoms (up to 10(21) cm(-3)) stabilized in xenon-nitrogen nanoclusters have been revealed.
机译:我们提出的准分子XeO *分子在纳米簇的氙气核周围的分子氮膜中的首次观察。多壳纳米团簇是通过冷氦蒸气(T = 1.5 K)将含有少量氮和氙混合物的氦射流快速冷却而形成的。注入超流氦中的此类纳米团簇聚集在多孔杂质-氦冷凝物中。氦气与掺混物通过射频放电可以存储高密度的稳定在杂质氦冷凝物中的自由基。自由基的强烈重组发生在这些缩合物的破坏过程中,并且由于光发射而产生了可观察到的激发物种。在破坏氙-氮-氦冷凝物后,已检测到氙-氧配合物的丰富光谱。氙气环境淬灭了亚稳态的N(D-2)原子,但对N(P-2)原子的发光作用却弱得多。研究了氙-氮-氦冷凝物中捕获的N(S-4)原子的电子自旋共振谱。氙气氮纳米簇中稳定的高氮原子局部浓度(最高10(21)cm(-3))已被发现。

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