WKB Electron Wave Functions in a Tightly Focused Laser Beam
arXiv:2102.06692 · doi:10.1103/PhysRevD.103.076011
Abstract
Available laser technology is opening the possibility of testing QED experimentally in the so-called strong-field regime. This calls for developing theoretical tools to investigate strong-field QED processes in electromagnetic fields of complex spacetime structure. Here, we propose a scheme to compute electron wave functions in tightly focused laser beams by taking into account exactly the complex spacetime structure of the fields. The scheme is solely based on the validity of the Wentzel-Kramers-Brillouin (WKB) approximation and the resulting wave functions, unlike previously proposed ones [Phys. Rev. Lett. \textbf{113}, 040402 (2014)], do not rely on approximations on the classical electron trajectory. Moreover, a consistent procedure is indicated to take into account higher-order quantum effects within the WKB approach depending on higher-and-higher powers of the Planck constant. In the case of a plane-wave background field the found wave functions exactly reduce to the Volkov states, which are then written in a new and fully quasiclassical form. Finally, by using the leading-order WKB wave functions to compute the probabilities of nonlinear Compton scattering and nonlinear Breit-Wheeler pair production, it is explicitly shown that, if additionally the energies of the charges are sufficiently large that the latter are not significantly deflected by the field, the corresponding Baier's formulas are exactly reproduced for an otherwise arbitrary classical electron/positron trajectory.
49 pages, no figures. Misprints corrected in Eqs. (B2) and (B3)
References in corpus (21)
- Nonlinear Compton scattering in ultra-short laser pulses
- Non-Linear Compton Scattering of Ultrashort and Ultraintense Laser Pulses
- Finite size effects in stimulated laser pair production
- Trident pair production in strong laser pulses
- Compton Process in Intense Short Laser Pulses
- Photon polarisation in electron-seeded pair-creation cascades
- Nonlinear double Compton scattering in the full quantum regime
- Testing numerical implementations of strong field electrodynamics
- Nonlinear Breit-Wheeler pair production in a tightly focused laser beam
- Note on the conjectured breakdown of QED perturbation theory in strong fields
- Photon splitting in a laser field
- Polarization operator approach to pair creation in short laser pulses
- Exact classical and quantum dynamics in background electromagnetic fields
- Spin correlations in nonperturbative electron-positron pair creation by petawatt laser pulses colliding with a TeV proton beam
- First-order strong-field QED processes in a tightly focused laser beam
- Analytical tools for investigating strong-field QED processes in tightly focused laser fields
- Classical and quantum particle dynamics in univariate background fields
- Nonperturbative Bethe-Heitler pair creation in combined high- and low-frequency laser fields
- On Seminal HEDP Research Opportunities Enabled by Colocating Multi-Petawatt Laser with High-Density Electron Beams
- Focussing effects in laser-electron Thomson scattering
- Classical and quantum dynamics of a charged scalar particle in a background of two counterpropagating plane waves
Cited by in corpus (12)
- Advances in QED with intense background fields
- Fully polarized nonlinear Breit-Wheeler pair production in pulsed plane waves
- Non-linear Breit-Wheeler pair production in collisions of bremsstrahlung quanta and a tightly focussed laser pulse
- Analytical WKB theory for high-harmonic generation and its application to massive Dirac electrons
- Optimal photon polarization toward the observation of the nonlinear Breit-Wheeler pair production
- The electron mass shift in an intense plane wave
- Quasiclassical representation of the Volkov propagator and the tadpole diagram in a plane wave
- Testing strong-field QED with the avalanche precursor
- Structure of radiative corrections in a strong constant crossed field in the bubble-chain approximation
- Particle-beam scattering from strong-field QED
- Intrinsic Nonlocality of Spin- and Polarization-Resolved Probabilities in Strong-Field Quantum Electrodynamics
- Short-term evolution of electron wave packet in a constant crossed field with radiative corrections