Please wait a minute...
Chinese Physics, 2007, Vol. 16(12): 3668-3674    DOI: 10.1088/1009-1963/16/12/019
ATOMIC AND MOLECULAR PHYSICS Prev   Next  

Multireference configuration interaction potential curve and analytical potential energy function of the ground and low-lying excited states of CdSe

Gao Feng(高峰),Yang Chuan-Lu (杨传路), Hu Zhen-Yan(胡振彦), and Wang Mei-Shan(王美山)
Department of Physics, Ludong University, Yantai 264025, China
Abstract  The potential energy curves (PECs) of the ground state ($^{3}\Pi )$ and three low-lying excited states ($^{1}\Sigma $, $^{3}\Sigma $, $^{ 1}\Pi )$ of CdSe dimer have been studied by employing quasirelativistic effective core potentials on the basis of the complete active space self-consistent field method followed by multireference configuration interaction calculation. The four PECs are fitted to analytical potential energy functions using the Murrel--Sorbie potential function. Based on the PECs, the vibrational levels of the four states are determined by solving the Schr?dinger equation of nuclear motion, and corresponding spectroscopic constants are accurately calculated. The equilibrium positions as well as the spectroscopic constants and the vibrational levels are reported. By our analysis, the $^{3}\Pi $ state, of which the dissociation asymptote is Cd($^{1}$S) + Se($^{3}$P), is identified as a ground state of CdSe dimer, and the corresponding dissociation energy is estimated to be 0.39\,eV. However, the first excited state is only 1132.49 cm$^{ - 1}$ above the ground state and the $^{3}\Sigma $ state is the highest in the four calculated states.
Keywords:  potential energy curve      multireference configuration interaction      spectroscopic constants      vibrational levels  
Accepted manuscript online: 
PACS:  31.15.xr (Self-consistent-field methods)  
  31.15.ve (Electron correlation calculations for atoms and ions: ground state)  
  31.50.-x (Potential energy surfaces)  
  33.15.Fm (Bond strengths, dissociation energies)  
  33.15.Mt (Rotation, vibration, and vibration-rotation constants)  
  33.20.Tp (Vibrational analysis)  
Fund: Project supported by the national Natural Science Foundation of China (Grant No 10674114).

Cite this article: 

Gao Feng(高峰), Yang Chuan-Lu (杨传路), Hu Zhen-Yan(胡振彦), and Wang Mei-Shan(王美山) Multireference configuration interaction potential curve and analytical potential energy function of the ground and low-lying excited states of CdSe 2007 Chinese Physics 16 3668

[1] Theoretical study on the transition properties of AlF
Yun-Guang Zhang(张云光), Ling-Ling Ji(吉玲玲), Ru Cai(蔡茹),Cong-Ying Zhang(张聪颖), and Jian-Gang Xu(徐建刚). Chin. Phys. B, 2022, 31(5): 053101.
[2] Highly accurate theoretical study on spectroscopic properties of SH including spin-orbit coupling
Shu-Tao Zhao(赵书涛), Xin-Peng Liu(刘鑫鹏), Rui Li(李瑞), Hui-Jie Guo(国慧杰), and Bing Yan(闫冰). Chin. Phys. B, 2021, 30(7): 073104.
[3] Configuration interaction study on low-lying states of AlCl molecule
Xiao-Ying Ren(任笑影), Zhi-Yu Xiao(肖志宇), Yong Liu(刘勇), and Bing Yan(闫冰). Chin. Phys. B, 2021, 30(5): 053101.
[4] Exploration and elaboration of photo-induced proton transfer dynamical mechanism for novel 2-[1,3]dithian-2-yl-6-(7aH-indol-2-yl)-phenol sensor
Lei Xu(许磊), Tian-Jie Zhang(张天杰), Qiao-Li Zhang(张巧丽), Da-Peng Yang(杨大鹏). Chin. Phys. B, 2020, 29(5): 053102.
[5] Vibronic spectra of aluminium monochloride relevant to circumstellar molecule
Jian-Gang Xu(徐建刚), Cong-Ying Zhang(张聪颖), Yun-Guang Zhang(张云光). Chin. Phys. B, 2020, 29(3): 033102.
[6] Theoretical insights into photochemical ESITP process for novel DMP-HBT-py compound
Guang Yang(杨光)†, Kaifeng Chen(陈凯锋), Gang Wang(王岗), and Dapeng Yang(杨大鹏). Chin. Phys. B, 2020, 29(10): 103103.
[7] Accurate all-electron calculation on the vibrational and rotational spectra of ground states for O2 and its ions
Qiao-Xia Wang(王巧霞), Yu-Min Wang(王玉敏), Ri Ma(马日), Bing Yan(闫冰). Chin. Phys. B, 2019, 28(7): 073101.
[8] Low-lying electronic states of aluminum monoiodide
Xiang Yuan(袁翔), Shuang Yin(阴爽), Yi Lian(连艺), Pei-Yuan Yan(颜培源), Hai-Feng Xu(徐海峰), Bing Yan(闫冰). Chin. Phys. B, 2019, 28(4): 043101.
[9] Exploring the effect of aggregation-induced emission on the excited state intramolecular proton transfer for a bis-imine derivative by quantum mechanics and our own n-layered integrated molecular orbital and molecular mechanics calculations
Huifang Zhao(赵慧芳), Chaofan Sun(孙朝范), Xiaochun Liu(刘晓春), Hang Yin(尹航), Ying Shi(石英). Chin. Phys. B, 2019, 28(1): 018201.
[10] Diffusion Monte Carlo calculations on LaB molecule
Nagat Elkahwagy, Atif Ismail, S M A Maize, K R Mahmoud. Chin. Phys. B, 2018, 27(9): 093102.
[11] Laser cooling of CH molecule: Insights from ab initio study
Jie Cui(崔洁), Jian-Gang Xu(徐建刚), Jian-Xia Qi(祁建霞), Ge Dou(窦戈), Yun-Guang Zhang(张云光). Chin. Phys. B, 2018, 27(10): 103101.
[12] Theoretical study of spin-forbidden cooling transitions of indium hydride using ab initio methods
Yun-Guang Zhang(张云光), Hua Zhang(张华), Ge Dou(窦戈). Chin. Phys. B, 2017, 26(9): 093101.
[13] Potential energy curves, transition dipole moments, and radiative lifetimes of KBe molecule
Ming-Jie Wan(万明杰), Cheng-Guo Jin(金成国), You Yu(虞游), Duo-Hui Huang(黄多辉), Ju-Xiang Shao(邵菊香). Chin. Phys. B, 2017, 26(3): 033101.
[14] MRCI+Q study of the low-lying electronic states of CdF including spin—orbit coupling
Shu-Tao Zhao(赵书涛), Bing Yan(闫冰), Rui Li(李瑞), Shan Wu(武山), Qiu-Ling Wang(王秋玲). Chin. Phys. B, 2017, 26(2): 023105.
[15] Ab initio investigation of sulfur monofluoride and its singly charged cation and anion in their ground electronic state
Song Li(李松), Shan-Jun Chen(陈善俊), Yan Chen(陈艳), Peng Chen(陈朋). Chin. Phys. B, 2016, 25(3): 033101.
No Suggested Reading articles found!