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Analytical model for CMB temperature angular power spectrum from cosmic (super-)strings

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arxiv 1006.0687 v2 pith:3YKMVRZY submitted 2010-06-03 astro-ph.CO gr-qchep-ph

Analytical model for CMB temperature angular power spectrum from cosmic (super-)strings

classification astro-ph.CO gr-qchep-ph
keywords spectrumangularpowercosmicstringsintercommutingscalesstring
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We present a new analytical method to calculate the small angle CMB temperature angular power spectrum due to cosmic (super-)string segments. In particular, using our method, we clarify the dependence on the intercommuting probability $P$. We find that the power spectrum is dominated by Poisson-distributed string segments. The power spectrum for a general value of $P$ has a plateau on large angular scales and shows a power-law decrease on small angular scales. The resulting spectrum in the case of conventional cosmic strings is in very good agreement with the numerical result obtained by Fraisse et al.. Then we estimate the upper bound on the dimensionless tension of the string for various values of $P$ by assuming that the fraction of the CMB power spectrum due to cosmic (super-)strings is less than ten percents at various angular scales up to $\ell=2000$. We find that the amplitude of the spectrum increases as the intercommuting probability. As a consequence, strings with smaller intercommuting probabilities are found to be more tightly constrained.

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Cited by 1 Pith paper

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  1. Constraints on Cosmic Strings from the Curl-Mode CMB Lensing Power Spectrum measured by ACT DR6

    astro-ph.CO 2026-06 unverdicted novelty 4.0

    ACT DR6 curl lensing yields 2σ bounds Gμ P^{-1} ≤ 3.5×10^{-5} (small-P) and Gμ ≤ 5.0×10^{-5} (P=1), tightened further with Planck 2013 data.