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Transition signatures for electron-positron pair creation in space-time inhomogeneous electric field

1 Pith paper cite this work. Polarity classification is still indexing.

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abstract

The process of electron-positron pair creation through multi-photon absorption in a space-time dependent electric field is analyzed using computational quantum field theory. Our findings reveal two distinct pair creation channels: the symmetric and asymmetric transition channels. We propose that the asymmetric transition channel arises from the inherent spatial inhomogeneity of intense laser pulses. By mapping the field-theoretical model of laser-assisted multi-photon pair creation onto a quantum-mechanical time-dependent framework, a semi-analytical solution that captures the asymmetric transition signatures of vacuum decay is derived. Additionally, it is demonstrated that neglecting spatial inhomogeneity leads to erroneous transition amplitudes and incorrect identification of pair creation channels. Furthermore, we have established that asymmetric transition channels substantially enhance the creation of electron-positron pairs for a given laser pulse energy.

fields

quant-ph 1

years

2026 1

verdicts

REJECT 1

representative citing papers

Effect of Strong Field Space-time Features on Vacuum Pair

quant-ph · 2026-08-09 · reject · novelty 4.0

A moving potential well is reported to lower the pair-creation threshold through Lorentz-transformed bound states, but the frame comparison omits the vector potential and is internally inconsistent.

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  • Effect of Strong Field Space-time Features on Vacuum Pair quant-ph · 2026-08-09 · reject · none · ref 46 · internal anchor

    A moving potential well is reported to lower the pair-creation threshold through Lorentz-transformed bound states, but the frame comparison omits the vector potential and is internally inconsistent.