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首页> 外文期刊>Physica, B. Condensed Matter >Hyperfine coupling constants of muonium in sub and supercritical water
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Hyperfine coupling constants of muonium in sub and supercritical water

机译:亚临界水和超临界水中on的超细耦合常数

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摘要

Muonium, like the hydrogen atom, is a hydrophobic solute in water under standard conditions. Molecular dynamics simulations suggest that the free atom exists in a transient clathrate-like cage of hydrogen-bonded water molecules. The hyperfine constants of Mu and H are very close to their vacuum values, supporting the picture of an atom "rattling" around in a hole in the liquid. Muonium has now been studied in water over a wide range of temperatures and pressures, from standard conditions to over 400 degrees C and 400 bar (the critical point is at 374 degrees C, 221 bar). Drastic changes occur in the properties of water over this range of conditions, so large changes in the muonium hyperfine constant might well be expected. Surprisingly, the changes are small. The hyperfine coupling constant goes through a minimum in the subcritical region, and then increases toward the vacuum value under supercritical conditions. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 10]
机译:与氢原子一样,在标准条件下也是水中的疏水性溶质。分子动力学模拟表明,游离原子存在于氢键水分子的瞬态笼状笼中。 Mu和H的超精细常数非常接近其真空值,支持原子在液体的孔中“爬行”的图像。从标准条件到超过400摄氏度和400巴(临界点为374摄氏度,221巴),现已在水中在广泛的温度和压力范围内研究了on。在此条件范围内,水的性质发生了巨大变化,因此,hyper超细常数​​的大变化是可以预期的。令人惊讶的是,变化很小。超精细耦合常数在亚临界区域内经历最小值,然后在超临界条件下朝真空值增加。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:10]

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