Analytical Lah-Laguerre optical formalism for perturbative chromatic dispersion

Author:

Popmintchev Dimitar1ORCID,Wang Siyang2,Zhang Xiaoshi23,Stoev Ventzislav4,Popmintchev Tenio12ORCID

Affiliation:

1. Photonics Institute

2. University of California San Diego

3. Aerospace Information Research Institute

4. LEMA Photonics Ltd

Abstract

We present a generalized perturbative analytical formalism for evaluation and optimization of the chromatic dispersion of complex ultrafast optical systems. Notably, we identify polynomial and recursive relations associated with the chromatic dispersion orders that are identical to the Lah and Laguerre transforms. We explicitly outline the first ten dispersion terms and dispersion slope parameters and visualize the significance of the chromatic dispersion orders for several advanced ultrafast optical and photonic systems consisting of various optical materials and nanostructures, grating and prism-pair compressors, and hollow-core photonic anti-resonant fibers. The derived simple hypergeometric transforms are applicable for evaluation of infinitely high orders for any type of frequency-dependent phase and can facilitate the optimization of complex optical systems with controlled dispersion balance at the single-cycle waveform extreme.

Funder

H2020 European Research Council

Alfred P. Sloan Foundation

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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