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Mean potential phase space theory of chemical reactions

机译:化学反应的平均势相空间理论

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A nonconventional application of phase space theory to the insertion reactions A + H_2,with A =C(~1D)and S(~1D),is presented.Instead of approximating the potential energies of interaction between separated fragments by their isotropic long-range contributions,as in the original theory,the latter are replaced by the accurate potential energies averaged with respect to Jacobi angles.The integral and differential cross sections obtained from this mean potential phase space theory(MPPST)turn out to be in very satisfying agreement with the benchmark predictions of the time-independent and time-dependent statistical quantum methods.The formal and numerical simplicity of MPPST with respect to any approach combining statistical assumptions and dynamical calculations makes it a promising tool for studying indirect polyatomic reactions.
机译:提出了相空间理论在A + H_2(A = C(〜1D)和S(〜1D))插入反应中的非常规应用,而不是通过各向同性的长程近似估计分离的片段之间相互作用的势能就像原始理论中的贡献一样,后者被相对于Jacobi角平均的精确势能所代替。从该平均势相空间理论(MPPST)获得的积分和微分截面与之非常吻合。 MPPST相对于结合统计假设和动力学计算的任何方法而言,形式和数值上的简单性使其成为研究间接多原子反应的有前途的工具。

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