The n-particle gluon radiation spectrum in shockwave scattering is a generalized Susskind-Glogower squeezed coherent state, and multi-graviton radiation follows similarly via double copy, with feasible large squeezing parameters ~ln(n_bar) leading to enhanced quantum noise in gravitational wave sp
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Quantum expectation value of gravitational waves from a classical source reproduces the classical retarded solution with Poisson graviton emission indicating a coherent state.
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Squeezed-state radiation in shockwave scattering: QCD-Gravity double copy
The n-particle gluon radiation spectrum in shockwave scattering is a generalized Susskind-Glogower squeezed coherent state, and multi-graviton radiation follows similarly via double copy, with feasible large squeezing parameters ~ln(n_bar) leading to enhanced quantum noise in gravitational wave sp
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Quantum description of gravitational waves generated by a classical source
Quantum expectation value of gravitational waves from a classical source reproduces the classical retarded solution with Poisson graviton emission indicating a coherent state.
- Squeezed Gravitons and One-Loop Self-Energy under Light-Cone Smearing