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Measuring the Boiling Point of the Vacuum of Quantum Electrodynamics

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arxiv 1807.10670 v2 pith:WT7YVDDR submitted 2018-07-27 hep-ph

classification hep-ph
keywords fieldelectrodynamicsquantumvacuumboilingcriticalelectricexperimental
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abstract

It is a long-standing non-trivial prediction of quantum electrodynamics that its vacuum is unstable in the background of a static, spatially uniform electric field and, in principle, sparks with spontaneous emission of electron-positron pairs. However, an experimental verification of this prediction seems out of reach because a sizeable rate for spontaneous pair production requires an extraordinarily strong electric field strength $|\mathbf E|$ of order the Schwinger critical field, ${\rm E}_c=m_e^2/e\simeq 1.3\times 10^{18}\ {\rm V/m}$, where $m_e$ is the electron mass and $e$ is its charge. Here, we show that the measurement of the rate of pair production due to the decays of high-energy bremsstrahlung photons in a high-intensity laser field allows for the experimental determination of the Schwinger critical field and thus the boiling point of the vacuum of quantum electrodynamics.

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  1. Letter of Intent for the LUXE Experiment

    physics.ins-det 2019-09 unverdicted novelty 4.0 of 10

    LUXE is a proposed experiment to collide XFEL electrons or bremsstrahlung photons with a 30-300 TW laser, reaching laser intensity parameter ξ up to 16 and quantum parameter χ up to 3.3.

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