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High Harmonic Generation and Molecular Orbital Tomography in Multielectron Systems: Beyond the Single Active Electron Approximation

机译:多电子系统中的高次谐波产生和分子轨道层析成像:超越单活性电子逼近

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It was recently shown that the highest molecular orbital of N_2 could be reconstructed from a series of high harmonic measurements. Existing theories of high harmonic generation and orbital tomographic imaging are based on the single active electron approximation that ignores essential quantum mechanical properties such as the indistinguishability of identical particles and the Pauli exclusion principle. We show that, when fully antisymmetrized multielectron wave functions and electronic relaxation in the cation are considered, molecular orbital tomography records the image of the Dyson orbital plus exchange contributions from inner shells. The mixing of contributions from more than one molecular orbital gives access to additional wave function information. By utilizing the exchange term, harmonic emission from a closed-shell 4-electron system can be interpreted as a complete Hartree-Fock wave function.
机译:最近显示,可以通过一系列高次谐波测量来重建N_2的最高分子轨道。现有的高次谐波产生和断层层析成像理论是基于单活性电子近似,它忽略了基本的量子力学性质,例如相同粒子的不可区分性和保利排斥原理。我们表明,当考虑完全反对称的多电子波函数和阳离子中的电子弛豫时,分子轨道断层扫描会记录戴森轨道的图像以及来自内壳的交换作用。来自一个以上分子轨道的贡献的混合使得可以访问其他波函数信息。通过利用交换项,可以将闭壳4电子系统的谐波发射解释为完整的Hartree-Fock波函数。

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