Matches in SemOpenAlex for { <https://semopenalex.org/work/W4297473841> ?p ?o ?g. }
- W4297473841 abstract "Coulomb effects in the high-energy part of photoelectron spectra produced through the above-threshold ionization of an atom subject to intense short laser pulses are analyzed. The analysis is carried out for linearly polarized and tailored bicircular laser pulses consisting of the fundamental and the second-harmonic components. We include the Coulomb effects in the analytic semiclassical description of the photoelectron rescattering plateau using the recently developed adiabatic approach [Phys. Rev. A 104, 033109 (2021)] and the expression for the Coulomb phase derived for description of the high harmonic generation [J. Phys. B: At., Mol. Opt. Phys. 51, 144006 (2018)]. Comparisons between predictions of the analytic approach and numerical solutions of the time-dependent Schrodinger equation are presented. They allow the identification of the contribution of the Coulomb interaction to photoelectron spectra for different laser pulse forms. We show that the Coulomb effects appear more pronounced for bicircular fields, where they demonstrate considerable sensitivity to the photoelectron emission angle. Instead, for linear polarization, the Coulomb effect in the high-energy plateau is generally insignificant." @default.
- W4297473841 created "2022-09-29" @default.
- W4297473841 creator A5023130385 @default.
- W4297473841 creator A5038991319 @default.
- W4297473841 creator A5082778706 @default.
- W4297473841 creator A5087826312 @default.
- W4297473841 creator A5088922469 @default.
- W4297473841 date "2022-09-28" @default.
- W4297473841 modified "2023-10-04" @default.
- W4297473841 title "Coulomb effects in the high-energy part of above-threshold-ionization spectra in intense bicircular laser fields" @default.
- W4297473841 cites W1780276646 @default.
- W4297473841 cites W1968550751 @default.
- W4297473841 cites W1971888838 @default.
- W4297473841 cites W1976625501 @default.
- W4297473841 cites W1978779255 @default.
- W4297473841 cites W1979452492 @default.
- W4297473841 cites W1996957420 @default.
- W4297473841 cites W2002197115 @default.
- W4297473841 cites W2011954907 @default.
- W4297473841 cites W2016948315 @default.
- W4297473841 cites W2017442940 @default.
- W4297473841 cites W2019592499 @default.
- W4297473841 cites W2020017746 @default.
- W4297473841 cites W2027737182 @default.
- W4297473841 cites W2028126476 @default.
- W4297473841 cites W2029815547 @default.
- W4297473841 cites W2034340669 @default.
- W4297473841 cites W2040473295 @default.
- W4297473841 cites W2051740381 @default.
- W4297473841 cites W2058733183 @default.
- W4297473841 cites W2069857400 @default.
- W4297473841 cites W2070337462 @default.
- W4297473841 cites W2074950862 @default.
- W4297473841 cites W2076941862 @default.
- W4297473841 cites W2082436084 @default.
- W4297473841 cites W2083095544 @default.
- W4297473841 cites W2090540492 @default.
- W4297473841 cites W2136007818 @default.
- W4297473841 cites W2146830821 @default.
- W4297473841 cites W2166603911 @default.
- W4297473841 cites W2300382059 @default.
- W4297473841 cites W2328495443 @default.
- W4297473841 cites W2330343107 @default.
- W4297473841 cites W2332769132 @default.
- W4297473841 cites W2511401761 @default.
- W4297473841 cites W2597131627 @default.
- W4297473841 cites W2739909602 @default.
- W4297473841 cites W2744908697 @default.
- W4297473841 cites W2792630811 @default.
- W4297473841 cites W2800777883 @default.
- W4297473841 cites W2802716477 @default.
- W4297473841 cites W2804106643 @default.
- W4297473841 cites W2810409597 @default.
- W4297473841 cites W2811910797 @default.
- W4297473841 cites W2886311862 @default.
- W4297473841 cites W2886823549 @default.
- W4297473841 cites W2900447720 @default.
- W4297473841 cites W2943084343 @default.
- W4297473841 cites W2963730065 @default.
- W4297473841 cites W2990317118 @default.
- W4297473841 cites W3098847287 @default.
- W4297473841 cites W3102101297 @default.
- W4297473841 cites W3117451733 @default.
- W4297473841 cites W3166409465 @default.
- W4297473841 cites W3200846503 @default.
- W4297473841 cites W3208668623 @default.
- W4297473841 cites W4211101250 @default.
- W4297473841 cites W4231551083 @default.
- W4297473841 cites W4233172361 @default.
- W4297473841 cites W4253237014 @default.
- W4297473841 doi "https://doi.org/10.1103/physreva.106.033117" @default.
- W4297473841 hasPublicationYear "2022" @default.
- W4297473841 type Work @default.
- W4297473841 citedByCount "2" @default.
- W4297473841 countsByYear W42974738412023 @default.
- W4297473841 crossrefType "journal-article" @default.
- W4297473841 hasAuthorship W4297473841A5023130385 @default.
- W4297473841 hasAuthorship W4297473841A5038991319 @default.
- W4297473841 hasAuthorship W4297473841A5082778706 @default.
- W4297473841 hasAuthorship W4297473841A5087826312 @default.
- W4297473841 hasAuthorship W4297473841A5088922469 @default.
- W4297473841 hasConcept C107190969 @default.
- W4297473841 hasConcept C121332964 @default.
- W4297473841 hasConcept C145148216 @default.
- W4297473841 hasConcept C147120987 @default.
- W4297473841 hasConcept C147192597 @default.
- W4297473841 hasConcept C147789679 @default.
- W4297473841 hasConcept C158749347 @default.
- W4297473841 hasConcept C184779094 @default.
- W4297473841 hasConcept C185592680 @default.
- W4297473841 hasConcept C198291218 @default.
- W4297473841 hasConcept C205049153 @default.
- W4297473841 hasConcept C2779841645 @default.
- W4297473841 hasConcept C4839761 @default.
- W4297473841 hasConcept C520434653 @default.
- W4297473841 hasConcept C62520636 @default.
- W4297473841 hasConcept C64672749 @default.
- W4297473841 hasConcept C69402668 @default.
- W4297473841 hasConcept C9342510 @default.
- W4297473841 hasConceptScore W4297473841C107190969 @default.