Comparative analysis of wavenumber response in phase contrast and spiral phase imaging systems for plasma diagnostics
Abstract
Phase contrast imaging (PCI) has been used for decades to study plasma density fluctuations, but its wavenumber response is constrained by the phase plate groove width and beam waist. Spiral phase contrast imaging (SPCI) with a spiral phase plate may offer broader sensitivity, even though its output signal is quadratic, because it has no constraint except at the central singularity, i.e., . In this work, we numerically compare the wavenumber response of both techniques using two distinct models: (i) static square phase objects with scale lengths ranging from 5 to 25 mm, and (ii) a time-evolving, anisotropic, multi-scale turbulence field with a Kolmogorov-like spectrum. For static square objects, PCI exhibits a lower cutoff at mm, while SPCI produces measurable signals down to mm via the autocorrelation of the gradient spectrum. For the plasma-like turbulence model, PCI retains its lower cutoff at mm. In contrast, SPCI produces measurable signals down to mm. These results suggest that SPCI provides low-wavenumber information below the PCI cutoff, offering complementary diagnostic information for multi-scale plasma turbulence studies.
Keywords
Cite
@article{arxiv.2607.29307,
title = {Comparative analysis of wavenumber response in phase contrast and spiral phase imaging systems for plasma diagnostics},
author = {Jigme Zangpo and Hirokazu Kobayashi and Haruki Kawaguchi and Ryo Yasuhara},
journal= {arXiv preprint arXiv:2607.29307},
year = {2026}
}