Exact quantum dynamics study of the H(2S) + SiH+ (X1Σ+) reaction on a new potential energy surface o

来源 :中国物理B(英文版) | 被引量 : 0次 | 上传用户:cnaxnn
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Based on a new global potential energy surface of SiH2+(X2A1),the exact quantum dynamical calculation for the H(2S) + SiH+ (X1Σ+) → H2 + Si+ reaction has been carried out by using the Chebyshev wave packet method.The initial state specified (vi =0,Ji =0) probabilities,integral cross sections (ICS) and thermal rate constants of the title reaction are calculated.All partial wave contributions up to J =90 are calculated in exact quantum calculation including the full Coriolis coupling (CC) effect.The dynamical behaviors of probabilities,ICSs and rate constants are found to be in accord with an exothermic reaction without potential barrier.By comparing the probabilities of CC with the corresponding centrifugal sudden (CS) approximation ones,it can be concluded that neglecting CC effect will decrease the collision time,increase the amplitude of oscillation and lead to overestimation or underestimation of the reaction probability.For ICSs and rate constants,it is found that the deviation of CC and CS ICSs is small in the most of collision energy range except for the range of 0 eV-0.05 eV,while the deviation of both rate constants is considerable in the temperature range of 16 K-1000 K.
其他文献
Based on the multiconfiguration Dirac-Hartree-Fock (MCDHF) method,similar models are employed to simultane-ously calculate the first-order and second-order Zeeman coefficients as well as the hyperfine interaction constants of the related energy levels of
Coherent superposition of electronic states induces attosecond electron motion in molecules.We theoretically investi-gate the strong-field ionization of this superposition state by numerically solving the time-dependent Schr(o)dinger equation.In the obtai
Coherent electronic dynamics are of great significance in photo-induced processes and molecular magnetism.We theoretically investigate electronic dynamics of triatomic molecule H32+ by circularly polarized pulses,including electron density distributions,i
By using the three-dimensional classical ensemble model,the recollision dynamics in nonsequential double ionization(NSDI) of Ar by 780-nm laser pulses at (6-1.2) × 1014 W/cm2 was extensively studied.We revealed the picture of multiple-recollision in the d
Thermally activated delayed fluorescence (TADF) molecules have attracted great attention as high efficient lumines-cent materials.Most of TADF molecules possess small energy gap between the first singlet excited state (S1) and the first triplet excited st
Based on the model-and data-driven strategy,a spectroscopy learning method that can extract the novel and hidden information from the line list databases has been applied to the R branch emission spectra of 3-0 band of the ground electronic state of 12C16
We demonstrate a broad gain,continuous-wave (CW) operation InP-based quantum cascade laser (QCL) emitting at 11.8 μm with a modified dual-upper-state (DAU) and diagonal transition active region design.A 3 mm cavity length,16.5 μm average ridge wide QCL wi
Based on the index-induced mode coupling between the higher-order mode in core and the fundamental mode in cladding tubes,the single-mode operation can be realized in any antiresonant fibers (ARFs) when satisfying that the area ratio of cladding tube and
We theoretically study the stationary entanglement of two charged nanomechanical oscillators coupling via Coulomb interaction in an optomechanical system with an additional Kerr medium.We show that the degree of entanglement be-tween two nanomechanical os
We report elastic cross sections for low-energy electron scattering with formamide-(H2O)n complexes (n =1,2) in the energy region of 0.01-8 eV.The scattering calculations are performed using the R-matrix method in the static-exchange(SE) approximation.We