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首页> 外文期刊>The Journal of Chemical Physics >Relativistic effects on the nuclear magnetic shieldings of rare-gas atoms and halogen in hydrogen halides within relativistic polarization propagator theory
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Relativistic effects on the nuclear magnetic shieldings of rare-gas atoms and halogen in hydrogen halides within relativistic polarization propagator theory

机译:相对论极化传播理论中相对论对卤化氢中稀有气体原子和卤素的核磁屏蔽的影响

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In this work an analysis of the electronic origin of relativistic effects on the isotropic dia- and paramagnetic contributions to the nuclear magnetic shielding sigma(X) for noble gases and heavy atoms of hydrogen halides is presented.All results were obtained within the 4-component polarization propagator formalism at different level of approach [random-phase approximation (RPA) and pure zeroth-order approximation (PZOA)],by using a local version of the DIRAC code.From the fact that calculations of diamagnetic contributions to a within RPA and PZOA approaches for HX(X =Br,I,At) and rare-gas atoms are quite close each to other and the finding that the diamagnetic part of the principal propagator at the PZOA level can be developed as a series [S(DELTA)],it was found that there is a branch of negative-energy "virtual" excitations that contribute with more than 98% of the total diamagnetic value even for the heavier elements,namely,Xe,Rn,I,and At.It contains virtual negative-energy molecular-orbital states with energies between -2mc~2 and -4mc~2.This fact can explain the excellent performance of the linear response elimination of small component (LR-ESC) scheme for elements up to the fifth row in the Periodic Table.An analysis of the convergency of 5(DELTA) and its physical implications is given.It is also shown that the total contribution to relativistic effects of the innermost orbital (1s_(1/2)) is by far the largest.For the paramagnetic contributions results at the RPA and PZOA approximations are similar only for rare-gas atoms.On the other hand,if the mass-correction contributions to sigma~p are expressed in terms of atomic orbitals,a different pattern is found for 1s_(1/2) orbital contributions compared with all other s-type orbitals when the whole set of rare-gas atoms is considered.
机译:在这项工作中,分析了稀有气体和卤化氢重原子对铁磁各向异性σ(X)的各向同性径向和顺磁贡献的相对论效应的电子起源,所有结果均在4分量内获得通过使用本地版本的DIRAC代码,在不同的方法级别[随机相位近似(RPA)和纯零阶近似(PZOA)]下的极化传播器形式主义。用于HX(X = Br,I,At)和稀有气体原子的PZOA方法彼此非常接近,并且发现可以将主传播器在PZOA级别的反磁性部分发展为一系列[S(DELTA) ],发现存在一个负能量“虚拟”激发分支,即使对于较重的元素(即Xe,Rn,I和At),也贡献了超过98%的总反磁值。负能量分子能量在-2mc〜2和-4mc〜2之间的轨道轨道状态。这一事实可以解释周期表中直到第五行的元素的小分量线性响应消除(LR-ESC)方案的出色性能。对5(δ)的会聚性及其物理含义进行了分析,还表明,最内层轨道(1s_(1/2))的相对论效应的总贡献迄今为止最大。 RPA和PZOA近似值的结果仅对稀有气体原子相似。另一方面,如果以原子轨道表示对σ〜p的质量校正贡献,则发现1s_(1/2当考虑整套稀有气体原子时,与所有其他s型轨道相比,轨道贡献更大。

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