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Perez Sarmiento, K., Laguë, A., Madhavacheril, M.S., Jain, B. and Sherwin, B. (2025) Reconstructing the Shape of the Nonlinear Matter Power Spectrum Using CMB Lensing and Cosmic Shear. Physical Review D, 112, Article ID: 063510.
https://doi.org/10.1103/bzrj-76sn
has been cited by the following article:
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TITLE:
Study of Warm Dark Matter with the Lyman-α Forest
AUTHORS:
Bruce Hoeneisen
KEYWORDS:
Lyman-α Forest, Warm Dark Matter, Free Streaming, Dark Matter
JOURNAL NAME:
International Journal of Astronomy and Astrophysics,
Vol.16 No.3,
July
20,
2026
ABSTRACT: Quasar light becomes absorbed by the Lyman-α line of neutral hydrogen in “clouds” along the line-of-sight in the highly ionized intergalactic medium after re-ionization. The received flux spectrum is known as the “Lyman-α forest”. Limits on the dark matter “standard thermal relic mass” have been obtained in the literature from the power spectrum of the Lyman-α forest, e.g.
m
th
>5.7
keV. These limits are in tension with four independent estimates of the dark matter warmness:
0.6≲
m
th
≲1.6
keV. To try to understand this tension we attempt to measure the dark matter warmness by two methods: the power spectrum of the Lyman-α forest, and the width of individual absorption lines, e.g. “Lyman-α trees”. We obtain a measurement of the dark matter warmness with the Lyman-α forest power spectrum, in agreement with the four independent estimates. In conclusion, the warm dark matter free-streaming is clearly observed as a cut-off of the Lyman-α forest power spectrum.