Craigie Jacob, Hammad Ali, Cooper Bridgette, Averbukh Vitali
Department of Physics, Imperial College London, Prince Consort Road, London SW7 2AZ, United Kingdom.
J Chem Phys. 2014 Jul 7;141(1):014105. doi: 10.1063/1.4884785.
An isolated bound state coupled to a continuum shows an exponential decay of its survival probability. Rates of the exponential decay occurring due to the bound-continuum coupling can be recovered from discretized continuum (L(2)) calculations using a computational technique known as Stieltjes-Chebyshev moment theory or Stieltjes imaging. At the same time, some genuinely discrete level systems, e.g., Bixon-Jortner model, also show an exponential (or approximately exponential) decay of the initially populated level before the onset of quantum revivals. Here, we demonstrate numerically that Stieltjes imaging can be used for calculation of the rates of the exponential decay in such discrete level systems. We apply the Stieltjes imaging technique to the approximately exponential decay of inner-valence vacancies in trans-butadiene in order to show that the breakdown of the molecular orbital picture of ionization in the inner valence region can be physically interpreted as an energy-forbidden Coster-Kronig transition.
一个与连续谱耦合的孤立束缚态表现出其存活概率的指数衰减。由于束缚 - 连续谱耦合而发生的指数衰减速率可以通过一种称为斯蒂尔杰斯 - 切比雪夫矩理论或斯蒂尔杰斯成像的计算技术,从离散化连续谱(L(2))计算中恢复。同时,一些真正的离散能级系统,例如比克森 - 约尔特纳模型,在量子复苏开始之前,初始填充能级也表现出指数(或近似指数)衰减。在这里,我们通过数值证明斯蒂尔杰斯成像可用于计算此类离散能级系统中的指数衰减速率。我们将斯蒂尔杰斯成像技术应用于反式 - 丁二烯内价层空位的近似指数衰减,以表明在内价层区域电离的分子轨道图像的崩溃可以从物理上解释为能量禁戒的科斯特 - 克勒尼希跃迁。