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Quantum Chemistry Models in the momentum space: different representations of the same system

机译:动量空间中的量子化学模型:同一系统的不同表示

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The conventional approach to simple quantum chemistry models is contrasted with that known as momentum representation, where the wavefunctions are momentum dependent. Since the physical interactions are the same, state energies should not change, and whence the energy differences correlating with the real world as spectral lines or bands. We emphasize that one representation is not more fundamental than the other, and the choice is a matter of mathematical convenience. As spatial localization is rooted in our brains, to think in terms of the momentum present us a great mental challenge that can lead to complementary perspectives of a model.
机译:传统的简单量子化学模型方法与动量表示法相反,后者的波函数与动量有关。由于物理相互作用是相同的,因此状态能量不应改变,因此与真实世界相关的能量差即为谱线或谱带。我们强调一种表示形式并不比另一种表示形式更基本,并且选择是基于数学上的便利性。由于空间定位植根于我们的大脑,因此根据动量来思考给我们带来了巨大的心理挑战,并可能导致模型的互补观点。

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