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Gravitational waves from high temperature strings

delete2024-12-23
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OA
AI
A
Andrew R. Frey *
R
Ratul Mahanta
A
Anshuman Maharana
F
Fernando Quevedo
G
G. Villa
DOI:10.1007/JHEP12(2024)174delete
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摘要

摘要

En 中文
We study finite temperature effects in string cosmology and their potential gravitational wave signature. Expanding on our recent work [1], we consider a general configuration of highly excited open and closed strings at high enough temperature to be in the Hagedorn phase in 3+1 dimensions, in order to explore its cosmological implications. We find conditions, which can be satisfied in compactifications with moduli stabilization, that allow the long strings to remain in equilibrium in a controlled effective field theory, with equilibration driven by the joining and splitting of the dominant open string population. We calculate the emission rate of gravitons by long open strings, which we show is determined by ten dimensional flat space transition amplitudes available in the literature, and then find the total gravitational wave spectrum generated by the gas of long strings. The gravitational wave spectrum has robust characteristics. It peaks at frequencies of order 50-100 GHz, the same as for gravitational waves from the reheating epoch of the Standard Model. But the amplitude of the string signal is significantly larger than predicted by the Standard Model and its field theoretic extensions. The amplitude and other physical observables (such as the contribution to triangle Neff) are directly proportional to the string scale Ms; indicating that a potential signal may also determine the string scale. Our calculations provide one of the few examples of a signal of stringy origin that dominates over the field theory predictions. We give a physical explanation of our results and discuss further implications.
Keyword:
Early Universe Particle Physics
Long Strings
Cosmological models
Flux Compactifications

期刊

Journal of High Energy Physics 封面图
Journal of High Energy Physics
IF:
5.5
论文数:
4.0W
被引数:
13.7W

机构

H
harish chandra research institute
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498
论文数: 554
被引数: 2
U
University of Winnipeg
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809
论文数: 763
被引数: 2
H
homi bhabha national institute
学者数:
5.7K
论文数: 3.8K
被引数: 4
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