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Harmonic analysis of Mandelbrot cascades -- in the context of vector-valued martingales

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arxiv 2409.13164 v3 pith:2A5CUYSI submitted 2024-09-20 math.PR math-phmath.FAmath.MP

classification math.PRmath-phmath.FAmath.MP
keywords fouriermccmmandelbrotrandomanalysischaosdecaydimension
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abstract

We solve a long-standing open problem of determining the Fourier dimension of the Mandelbrot canonical cascade measure (MCCM). This problem of significant interest was raised by Mandelbrot in 1976 and reiterated by Kahane in 1993. Specifically, we derive the exact formula for the Fourier dimension of the MCCM for random weights $W$ satisfying the condition $\mathbb{E}[W^t]<\infty$ for all $t>0$. As a corollary, we prove that the MCCM is Salem if and only if the random weight has a specific two-point distribution. In addition, we show that the MCCM is Rajchman with polynomial Fourier decay whenever the random weight satisfies $\mathbb{E}[W^{1+\delta}]<\infty$ for some $\delta>0$. As a consequence, we discover that, in the Biggins-Kyprianou's boundary case, the Fourier dimension of the MCCM exhibits a second order phase transition at the inverse temperature $\beta = 1/2$; we establish the upper Frostman regularity for MCCM; and we obtain a Fourier restriction estimate for MCCM. The major novelty of this paper is the discovery of putting the fine analysis of Fourier decay for multiplicative chaos measures into the theory of vector-valued martingales. This new viewpoint is of fundamental importance in the study of Fourier decay of multiplicative chaos measures. Indeed, in the sequel to this paper, combining the vector-valued martingale methods and ideas from Littlewood-Paley theory, the precise Fourier dimensions will be established for various classical models of multiplicative chaos measures including GMC of all dimensions, microcanonical Mandelbrot cascades, Mandelbrot random coverings, as well as Fourier-Walsh analysis of these models.

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Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Canonical Mandelbrot Cascades on Curves Are Rajchman

    math.PR 2026-07 accept novelty 8.0 of 10

    Canonical scalar dyadic Mandelbrot cascades, and their pushforwards by fixed nondegenerate C² arcs and Jordan curves, are almost surely Rajchman under the minimal Kahane–Peyrière integrability conditions.

  2. Exact values of Fourier dimensions of Gaussian multiplicative chaos on high dimensional torus

    math.PR 2025-07 conditional novelty 8.0 of 10

    For a specially constructed log-correlated field on T^d, the GMC measure almost surely has Fourier dimension d-γ^2 when γ<√(2d)/2 and (√(2d)-γ)^2 when √(2d)/2<=γ<√(2d), for all d>=1.

  3. Microcanonical cascades and random homeomorphisms

    math.PR 2025-05 conditional novelty 8.0 of 10

    Almost surely, the Fourier dimension of a Mandelbrot microcanonical cascade measure equals log_2(1/(E[W0^2]+E[W1^2])), settling the Mandelbrot-Kahane problem for this class.

  4. Exact Fourier dimensions of dyadic Mandelbrot cascades on curves of nonvanishing curvature under minimal integrability

    math.PR 2026-06 unverdicted novelty 7.0 of 10

    Under minimal Kahane–Peyrière integrability, the Fourier dimension of a scalar dyadic Mandelbrot cascade pushed onto any fixed nondegenerate C² arc or Jordan curve equals A_loc(W), the same explicit endpoint value as ...

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