New Journal of Physics (Jan 2021)

An integral-free representation of the Dyson series using divided differences

  • Amir Kalev,
  • Itay Hen

DOI
https://doi.org/10.1088/1367-2630/ac2dae
Journal volume & issue
Vol. 23, no. 10
p. 103035

Abstract

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The Dyson series is an infinite sum of multi-dimensional time-ordered integrals, which serves as a formal representation of the quantum time-evolution operator in the interaction-picture. Using the mathematical tool of divided differences, we introduce an alternative representation for the series that is entirely free from both time ordering and integrals. In this new formalism, the Dyson expansion is given as a sum of efficiently-computable divided differences of the exponential function, considerably simplifying the calculation of the Dyson expansion terms, while also allowing for time-dependent perturbation calculations to be performed directly in the Schrödinger-picture. We showcase the utility of this novel representation by studying a number of use cases. We also discuss several immediate applications.

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