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Shannon, Rényi, Tsallis Entropies and Onicescu Information Energy for Low-Lying Singly Excited States of Helium

机译:Shannon,Rényi,Tsallis Entopies和Onicescu信息能量为低洼单独激发氦气

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Knowledge of the electronic structures of atomic and molecular systems deepens our understanding of the desired system. In particular, several information-theoretic quantities, such as Shannon entropy, have been applied to quantify the extent of electron delocalization for the ground state of various systems. To explore excited states, we calculated Shannon entropy and two of its one-parameter generalizations, Rényi entropy of order α and Tsallis entropy of order α , and Onicescu Information Energy of order α for four low-lying singly excited states (1s2s 1 S e , 1s2s 3 S e , 1s3s 1 S e , and 1s3s 3 S e states) of helium. This paper compares the behavior of these three quantities of order 0.5 to 9 for the ground and four excited states. We found that, generally, a higher excited state had a larger Rényi entropy, larger Tsallis entropy, and smaller Onicescu information energy. However, this trend was not definite and the singlet–triplet reversal occurred for Rényi entropy, Tsallis entropy and Onicescu information energy at a certain range of order α .
机译:了解原子和分子系统的电子结构深化了我们对所需系统的理解。特别地,已经应用了若干信息 - 理论量,例如香农熵,以量化各种系统的地位的电子临床化程度。为了探索兴奋状态,我们计算了Shannon熵和其中的两个一参数概括,Rényirényi熵α和Tsallis Orderα的熵,以及Ondicescu信息能量为四个低洼单独激发状态(1S2S 1 S E. ,1S2S 3 S E,1S3S 1 S E和1S3S 3 S E状态)的氦气。本文将这三位订单0.5至9的行为与地面和四个兴奋状态进行了比较。我们发现,通常,更高的激发态有更大的Rényi熵,较大的Tsallis熵和更小的Onicescu信息能量。然而,这一趋势并不明确,并且在一定的订单α处发生了Rényi熵,Tsallis熵和Onicescu信息能量的单次趋势。

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