Time-Resolved Electronic Spectra with Efficient Quantum Dynamics Methods

  • Wehrle M
  • Šulc M
  • Vaníček J
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Abstract

We explore three specific approaches for speeding up the calculation of quantum time correlation functions needed for time-resolved electronic spectra. The first relies on finding a minimum set of sufficiently accurate electronic surfaces. The second increases the time step required for convergence of exact quantum simulations by using different split-step algorithms to solve the time-dependent Schrödinger equation. The third approach lowers the number of trajectories needed for convergence of approximate semiclassical dynamics methods.

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Wehrle, M., Šulc, M., & Vaníček, J. (2011). Time-Resolved Electronic Spectra with Efficient Quantum Dynamics Methods. CHIMIA, 65(5), 334. https://doi.org/10.2533/chimia.2011.334

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