WKB electron wave functions in a tightly focused laser beam

被引:18
|
作者
Di Piazza, A. [1 ]
机构
[1] Max Planck Inst Nucl Phys, Saupfercheckweg 1, D-69117 Heidelberg, Germany
关键词
QUASI-CLASSICAL THEORY; EIKONAL PERTURBATION-THEORY; QUANTUM PROCESSES; HADRON-DYNAMICS; PAIR CREATION; RADIATION; LIGHT; FIELD; INTENSITY; PULSES;
D O I
10.1103/PhysRevD.103.076011
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
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. 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.
引用
收藏
页数:25
相关论文
共 50 条
  • [41] Electron acceleration in vacuum by ultrashort and tightly focused radially polarized laser pulses
    Marceau, Vincent
    April, Alexandre
    Piche, Michel
    XVIIITH INTERNATIONAL CONFERENCE ON ULTRAFAST PHENOMENA, 2013, 41
  • [42] Electron-positron pair creation by a strong tightly focused laser field
    Fedotov, A. M.
    LASER PHYSICS, 2009, 19 (02) : 214 - 221
  • [43] WKB wave functions for a nonseparable Hamiltonian
    Girard, MF
    JOURNAL OF CHEMICAL PHYSICS, 1997, 107 (19): : 7960 - 7963
  • [44] WKB WAVE FUNCTIONS FOR HARMONIC OSCILLATOR
    GRUNWALD, HP
    MILANO, F
    AMERICAN JOURNAL OF PHYSICS, 1971, 39 (11) : 1394 - &
  • [45] Tightly focused beam propagation in the waist region
    Katrych, NA
    CAOL '2003: PROCEEDINGS OF THE 1ST INTERNATIONAL CONFERENCE ON ADVANCED OPTOELECTRONICS AND LASERS, VOL 1, 2003, : 221 - 223
  • [46] Analysis of the scattered light distribution of a tightly focused laser beam by a particle near a substrate
    Inami, W
    Kawata, Y
    JOURNAL OF APPLIED PHYSICS, 2001, 89 (11) : 5876 - 5880
  • [47] High Dose-Rate MeV Electron Beam from a Tightly-Focused Femtosecond IR Laser in Ambient Air
    Vallieres, Simon
    Powell, Jeffrey
    Connell, Tanner
    Evans, Michael
    Lytova, Marianna
    Fillion-Gourdeau, Francois
    Fourmaux, Sylvain
    Payeur, Stephane
    Lassonde, Philippe
    MacLean, Steve
    Legare, Francois
    LASER & PHOTONICS REVIEWS, 2024, 18 (02)
  • [48] Interaction of tightly focused laser beam with transparent dielectric particles in the shape of ellipsoid of revolution
    Filkin, VV
    Kotova, SP
    Rakhmatulin, MA
    SARATOV FALL MEETING 2001: LASER PHYSICS AND PHOTONICS SPECTROSCOPY, AND MOLECULAR MODELING II, 2002, 4706 : 47 - 51
  • [49] Enhancing vacuum beat wave electron acceleration through the synergistic action of two chirped, tightly focused LP laser pulses
    Middha, Kavish
    Thakur, Vishal
    Rajput, Jyoti
    JOURNAL OF OPTICS-INDIA, 2024,
  • [50] Electron acceleration by tightly focused radially polarized few-cycle laser pulses
    Liu Jin-Lu
    Sheng Zheng-Ming
    Zheng Jun
    CHINESE PHYSICS B, 2012, 21 (02)