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van der Waals forces in presence of free charges: An exact derivation from equilibrium quantum correlations

机译:电荷存在时的范德华力:精确的平衡量子相关性推导

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We study interatomic forces in a fluid consisting of a mixture of free charges and neutral atoms in the framework of the quantum many-body problem at nonzero temperature and nonzero density. Of central interest is the interplay between van der Waals forces and screening effects due to free charges. The analysis is carried out in a partially recombined hydrogen plasma in the Saha regime. The effective potentials in the medium between two atoms, or an atom and a charge, or two charges, are determined from the large-distance behavior of equilibrium proton-proton correlations. We show, in a proper low-temperature and low-density scaling limit, that those potentials all decay as r(-6) at large distance r, while the corresponding amplitudes are calculated exactly. In particular, the presence of free charges only causes a partial (nonexponential) screening of the atomic potential, and it does not modify its typical r(-6) decay. That potential reduces to the standard van der Waals form for two atoms in vacuum when the temperature is driven to zero. The analysis is based on first principles: it does not assume preformed atoms and takes into account in a coherent way all effects, quantum mechanical binding, ionization, and collective screening, which originate from the Coulomb potential. Our method relies on the path integral representation of the quantum Coulomb gas.
机译:我们在非零温度和非零密度的量子多体问题的框架内研究由自由电荷和中性原子的混合物组成的流体中的原子间力。最重要的是范德华力与免费电荷产生的屏蔽效应之间的相互作用。该分析是在Saha模式下在部分重组的氢等离子体中进行的。两个原子或一个原子与一个电荷或两个电荷之间的介质中的有效电势由平衡质子-质子相关性的远距离行为确定。我们显示,在适当的低温和低密度缩放限制下,那些电位在大距离r处全部衰减为r(-6),同时精确计算了相应的振幅。特别是,自由电荷的存在只会引起原子势的部分(非指数)屏蔽,并且不会改变其典型的r(-6)衰减。当温度降至零时,该电势降低为真空中两个原子的标准范德华形式。该分析基于第一原理:它不假设预先形成的原子,并且以连贯的方式考虑源自库仑势的所有效应,量子力学结合,电离和集体筛选。我们的方法依赖于量子库仑气体的路径积分表示。

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