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Comparative analysis of wavenumber response in phase contrast and spiral phase imaging systems for plasma diagnostics

Jigme Zangpo, Hirokazu Kobayashi, Haruki Kawaguchi, Ryo Yasuhara

physics.plasm-pharXiv:2607.29307

Abstract

Phase contrast imaging (PCI) has been used for decades to study plasma density fluctuations, but its wavenumber response k 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., k = 0. In this work, we numerically compare the wavenumber response of both techniques using two distinct models: (i) static square phase objects with scale lengths R 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 kmin ≈ 0.1 mm-1, while SPCI produces measurable signals down to kmin ≈ 0.007 mm-1 via the autocorrelation of the gradient spectrum. For the plasma-like turbulence model, PCI retains its lower cutoff at k ≈ 0.1 mm-1. In contrast, SPCI produces measurable signals down to k ≈ 0.007 mm-1. These results suggest that SPCI provides low-wavenumber information below the PCI cutoff, offering complementary diagnostic information for multi-scale plasma turbulence studies.

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