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Mass Reconstruction with CMB Polarization

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arxiv astro-ph/0111606 v3 pith:HYY6ZDX5 submitted 2001-11-30 astro-ph

Mass Reconstruction with CMB Polarization

classification astro-ph
keywords massreconstructionpolarizationtemperaturecosmicfieldslensinguk-arcmin
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Weak gravitational lensing by the intervening large-scale structure of the Universe induces high-order correlations in the cosmic microwave background (CMB) temperature and polarization fields. We construct minimum variance estimators of the intervening mass distribution out of the six quadratic combinations of the temperature and polarization fields. Polarization begins to assist in the reconstruction when E-mode mapping becomes possible on degree-scale fields, i.e. for an experiment with a noise level of ~40 uK-arcmin and beam of ~7', similar to the Planck experiment; surpasses the temperature reconstruction at ~26 uK-arcmin and 4'; yet continues to improve the reconstruction until the lensing B-modes are mapped to l ~ 2000 at ~0.3 uK-arcmin and 3'. Ultimately, the correlation between the E and B modes can provide a high signal-to-noise mass map out to multipoles of L ~ 1000, extending the range of temperature-based estimators by nearly an order of magnitude. We outline four applications of mass reconstruction: measurement of the linear power spectrum in projection to the cosmic variance limit out to L ~ 1000 (or wavenumbers 0.002 < k < 0.2 in h/Mpc), cross-correlation with cosmic shear surveys to probe the evolution of structure tomographically, cross-correlation of the mass and temperature maps to probe the dark energy, and the separation of lensing and gravitational wave B-modes.

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Forward citations

Cited by 5 Pith papers

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

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    astro-ph.CO 2026-05 unverdicted novelty 6.0

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  3. Observable CMB B-modes from Cosmological Phase Transitions

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

  4. CMB lensing from Planck PR4 maps

    astro-ph.CO 2022-06 accept novelty 5.0

    Planck PR4 maps with optimal filtering yield CMB lensing amplitude 1.004 ± 0.024 and σ8 Ωm^0.25 = 0.599 ± 0.016, the tightest lensing constraint yet.

  5. Update on the Physics of the Cosmic Microwave Background (2015-2025)

    astro-ph.CO 2026-07 conditional

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