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What no one has seen before: gravitational waveforms from warp drive collapse
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Despite originating in science fiction, warp drives have a concrete description in general relativity, with Alcubierre first proposing a spacetime metric that supported faster-than-light travel. Whilst there are numerous practical barriers to their implementation in real life, including a requirement for negative energy, computationally, one can simulate their evolution in time given an equation of state describing the matter. In this work, we study the signatures arising from a warp drive "containment failure", assuming a stiff equation of state for the fluid. We compute the emitted gravitational-wave signal and track the energy fluxes of the fluid. Apart from its rather speculative application to the search for extraterrestrial life in gravitational-wave detector data, this work is interesting as a study of the dynamical evolution and stability of spacetimes that violate the null energy condition. Our work highlights the importance of exploring strange new spacetimes, to (boldly) simulate what no one has seen before.
Forward citations
Cited by 3 Pith papers
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Steering a warp drive without exotic matter
A positive-energy steerable warp drive is constructed by matching the Kinnersley photon rocket to a flat passenger worldtube, with acceleration controlled by Bondi mass loss obeying a closed-form law.
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Radiative Signatures from Warp Drives Traveling Through the Earth's Atmosphere
A relativistic Alcubierre-type warp bubble entering Earth's atmosphere would trigger a bright shock glow with luminosities from terawatts to exawatts, making such transits detectable.
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Exploring Particle Geodesics in a Warp Drive Spacetime
A subluminal Alcubierre warp bubble protects a ship from stationary debris but accelerates head-on particles to speeds near the square root of their initial velocity; adding a transverse frame-dragging deflector shiel...
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