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A new method for the calculation of two-pulse time- and frequency-resolved spectra

机译:计算两脉冲时间和频率分辨谱的新方法

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A method has been developed for the computation of two-pulse time- and frequency-resolved spectra (fluorescence up-conversion, pump-probe, and photon-echo spectra) for dissipative multilevel systems with electronic couplings, which is valid for overlapping pump and probe/gate pulses of arbitrary duration. The pump pulse may be of arbitrary strength, while the probe pulse is assumed to be weak. The calculation is carried out in two steps. An ideal time- and frequency-re solved spectrum is computed first by substituting an auxiliary CW pulse for the actual probe/gate pulse. The (actual and auxiliary) field-matter interactions are incorporated into the system Hamiltonian and treated numerically exactly. The simultaneous propagation of several (from two to three) auxiliary density matrices yields a time-dependent cut of the ideal spectrum at a particular frequency. The spectrum for the actual probe/gate pulse is calculated afterwards by convoluting the ideal spectrum with the appropriate joint time and frequency gate function. The method has a similar to N-omega. scaling of the computational cost for a time- and frequency-resolved spectrum, in contrast to the similar to N-tau x N-omega scaling of the previous nonperturbative methods, N-tau (N-omega) being the number of grid points in the time (frequency) domain. (c) 2004 Elsevier B.V. All rights reserved.
机译:已开发出一种方法,用于计算带电子耦合的耗散多能级系统的两脉冲时间和频率分辨光谱(荧光上转换,泵浦探针和光子回波光谱),该方法对于重叠泵浦和任意持续时间的探测/门脉冲。泵浦脉冲可以具有任意强度,而探测脉冲被认为是弱的。计算分两步进行。首先通过将辅助CW脉冲替换为实际的探头/门脉冲来计算理想的时间和频率分辨频谱。 (实际的和辅助的)场物质相互作用被并入系统哈密顿量,并在数值上进行了精确处理。几个(从两个到三个)辅助密度矩阵的同时传播会在特定频率上产生理想频谱的时间依赖性切割。然后,通过将理想频谱与适当的联合时间和频率选通函数进行卷积,计算出实际探针/选通脉冲的频谱。该方法类似于N-ω。时间和频率分辨频谱的计算成本的缩放比例,与之前非扰动方法的N-tau x N-omega缩放比例相似,N-tau(N-omega)是网格中网格点的数量时域(频域)。 (c)2004 Elsevier B.V.保留所有权利。

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