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Direct Evidence of a Dual Cascade in Gravitational Wave Turbulence. | LitMetric

Direct Evidence of a Dual Cascade in Gravitational Wave Turbulence.

Phys Rev Lett

Institut de Physique de Nice, Université Nice-Sophia Antipolis, Parc Valrose, 06108 Nice, France.

Published: September 2021

AI Article Synopsis

  • The study presents the first direct numerical simulation of gravitational wave turbulence, focusing on weak gravitational waves and freely decaying turbulence in a simplified two-dimensional space.
  • An initial metric excitation at intermediate wave numbers results in a dual cascade of energy and wave action, with the energy cascade transitioning from a stable plateau to a power-law decay as it reaches dissipative scales.
  • The findings support the theory of weak wave turbulence, showing that weak gravitational wave turbulence can strengthen through an inverse cascade process that amplifies specific fluctuations over time.

Article Abstract

We present the first direct numerical simulation of gravitational wave turbulence. General relativity equations are solved numerically in a periodic box with a diagonal metric tensor depending on two space coordinates only, g_{ij}≡g_{ii}(x,y,t)δ_{ij}, and with an additional small-scale dissipative term. We limit ourselves to weak gravitational waves and to a freely decaying turbulence. We find that an initial metric excitation at intermediate wave number leads to a dual cascade of energy and wave action. When the direct energy cascade reaches the dissipative scales, a transition is observed in the temporal evolution of energy from a plateau to a power-law decay, while the inverse cascade front continues to propagate toward low wave numbers. The wave number and frequency-wave-number spectra are found to be compatible with the theory of weak wave turbulence and the characteristic timescale of the dual cascade is that expected for four-wave resonant interactions. The simulation reveals that an initially weak gravitational wave turbulence tends to become strong as the inverse cascade of wave action progresses with a selective amplification of the fluctuations g_{11} and g_{22}.

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Source
http://dx.doi.org/10.1103/PhysRevLett.127.131101DOI Listing

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