Coutinho-Neto Maurício D, Viel Alexandra, Manthe Uwe
Theoretische Chemie, TU München, Lichtenbergstr. 4, D-85747 Garching, Germany.
J Chem Phys. 2004 Nov 15;121(19):9207-10. doi: 10.1063/1.1814356.
Benchmark calculations of the tunneling splitting in malonaldehyde using the full dimensional potential proposed by Yagi et al. are reported. Two exact quantum dynamics methods are used: the multiconfigurational time-dependent Hartree (MCTDH) approach and the diffusion Monte Carlo based projection operator imaginary time spectral evolution (POITSE) method. A ground state tunneling splitting of 25.7+/-0.3 cm(-1) is calculated using POITSE. The MCTDH computation yields 25 cm(-1) converged to about 10% accuracy. These rigorous results are used to evaluate the accuracy of approximate dynamical approaches, e.g., the instanton theory.
报道了使用矢木等人提出的全维势对丙二醛中隧穿分裂的基准计算。使用了两种精确的量子动力学方法:多组态含时Hartree(MCTDH)方法和基于扩散蒙特卡罗的投影算符虚时谱演化(POITSE)方法。使用POITSE计算出基态隧穿分裂为25.7±0.3 cm⁻¹。MCTDH计算得出25 cm⁻¹,收敛到约10%的精度。这些精确结果用于评估近似动力学方法的准确性,例如瞬子理论。