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Weak Lensing Detection in CMB Maps

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arxiv astro-ph/9611012 v2 pith:PJBGILY5 submitted 1996-11-02 astro-ph

classification astro-ph
keywords functioncorrelationeffectsspecificfour-pointgravitationalscaletemperature
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The weak lensing effects are known to change only weakly the shape of the power spectrum of the Cosmic Microwave Background (CMB) temperature fluctuations. I show here that they nonetheless induce specific non-Gaussian effects that can be detectable with the four-point correlation function of the CMB anisotropies. The magnitude and geometrical dependences of this correlation function are investigated in detail. It is thus found to scale as the square of the derivative of the two-point correlation function and as the angular correlation function of the gravitational displacement field. It also contains specific dependences on the shape of the quadrangle formed by the four directions. When averaged at a given scale, the four-point function, that identifies with the connected part of the fourth moment of the probability distribution function of the local filtered temperature, scales as the square of logarithmic slope of its second moment, and as the variance of the gravitational magnification at the same angular scale. All these effects have been computed for specific cosmological models. It is worth noting that, as the amplitude of the gravitational lens effects has a specific dependence on the cosmological parameters, the detection of the four-point correlation function could provide precious complementary constraints to those brought by the temperature power spectrum.

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Cited by 2 Pith papers

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  1. Observable CMB B-modes from Cosmological Phase Transitions

    astro-ph.CO 2024-10 unverdicted novelty 5.0 of 10

    Phase transitions in dark sectors can generate CMB B-modes with amplitudes competitive with inflation but peaking at smaller angular scales.

  2. The Cosmic Microwave Background -- Secondary Anisotropies

    astro-ph.CO 2025-01 unverdicted

    A comprehensive review of the physics, observational status, and future prospects of CMB secondary anisotropies, containing no new results.

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