Finite size effects in stimulated laser pair production
arXiv:1002.4018 · doi:10.1016/j.physletb.2010.07.044
Abstract
We consider stimulated pair production employing strong-field QED in a high-intensity laser background. In an infinite plane wave, we show that light-cone quasi-momentum can only be transferred to the created pair as a multiple of the laser frequency, i.e.\ by a higher harmonic. This translates into discrete resonance conditions providing the support of the pair creation probability which becomes a delta-comb. These findings corroborate the usual interpretation of multi-photon production of pairs with an effective mass. In a pulse, the momentum transfer is continuous, leading to broadening of the resonances and sub-threshold behaviour. The peaks remain visible as long as the number of cycles per pulse exceeds unity. The resonance patterns in pulses are analogous to those of a diffraction process based on interference of the produced pairs.
7 pages, 7 EPS figures. Version 2 contains additional examples using smooth pulse envelopes. Conclusions unchanged
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- Trident pair production in strong laser pulses
- Spin correlations in nonperturbative electron-positron pair creation by petawatt laser pulses colliding with a TeV proton beam
- Strong field effects in laser pulses: the Wigner formalism
- Covariant Worldline Numerics for Charge Motion with Radiation Reaction
- Strong Field, Noncommutative QED