Orthogonal Dualities of Markov Processes and Unitary Symmetries

Journal Article (2019)
Author(s)

WGM Groenevelt (TU Delft - Analysis)

C. Giardinà (TU Delft - Applied Probability)

FRANK REDIG (TU Delft - Applied Probability)

G. Carinci (TU Delft - Applied Probability)

Research Group
Analysis
Copyright
© 2019 W.G.M. Groenevelt, C. Giardina', F.H.J. Redig, G. Carinci
DOI related publication
https://doi.org/10.3842/SIGMA.2019.053
More Info
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Publication Year
2019
Language
English
Copyright
© 2019 W.G.M. Groenevelt, C. Giardina', F.H.J. Redig, G. Carinci
Research Group
Analysis
Issue number
53
Volume number
15
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Abstract

We study self-duality for interacting particle systems, where the particles move as continuous time random walkers having either exclusion interaction or inclusion interaction. We show that orthogonal self-dualities arise from unitary symmetries of the Markov generator. For these symmetries we provide two equivalent expressions that are related by the Baker-Campbell-Hausdorff formula. The first expression is the exponential of an anti Hermitian operator and thus is unitary by inspection; the second expression is factorized into three terms and is proved to be unitary by using generating functions. The factorized form is also obtained by using an independent approach based on scalar products, which is a new method of independent interest that we introduce to derive (bi)orthogonal duality functions from non-orthogonal duality functions.

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