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Exact Results On the Number of Gravitons Radiated During Binary Inspiral

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arxiv 2409.14808 v4 pith:PH6JPRHM submitted 2024-09-23 gr-qc hep-th

classification gr-qchep-th
keywords gravitonseccentricityemittedfunctionangularcdotsduringexact
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abstract

We derive an exact formula $F(e)$ which provides a concrete estimate for the total number and angular momentum of gravitons emitted during the nonrelativistic inspiral of two black holes. We show that the function $F(e)$ is a slowly growing monotonic function of the eccentricity $0 \le e \le 1$ and $F(1) = 1.0128 \cdots $. We confirm and extend the results obtained by Page for the function $F(e)$. We also get an exact result for the ratio $\nu (e_i) = \frac{2\hbar N(L_i, e_i)}{L_i}$ where the numerator $2\hbar N(L_i, e_i)$ is the sum of the spin angular momentum magnitudes of the gravitons emitted and $N(L_i, e_i)$ is the total number of gravitons emitted in the gravitational waves during nonrelativistic inspiral from an initial eccentricity $e_i$ down to a final eccentricity $e = 0$ and the denominator $L_i$ is the magnitude of the initial orbital angular momentum. If the orbit starts off with unit eccentricity $e_i=1$, we get the value $\nu(1) = 1.002\, 268\, 666\, 2 \pm 10^{-10}$ which confirms the Page's conjecture that the true value of $\nu(1)$ will lie between $1.001\cdots$ and $1.003\cdots$. We also show that the formula $F(e)$ for gravitons emitted, originally expressed as an infinite series, can be represented by a single function through an integral representation.

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  1. Determination of the Angular Momentum of Radiated Gravitons, Scalars, and Dark Photons from Binary Orbits

    gr-qc 2026-08 conditional novelty 4.0 of 10

    Each radiated graviton from a binary carries about 2ħ of angular momentum and each scalar or vector quantum about ħ, with the graviton result extended from elliptical to hyperbolic orbits.

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