Second-order [O(k^2), k=omega/c] nondipole effects in soft-x-ray photoemission are demonstrated via an experimental and theoretical study of angular distributions of neon valence photoelectrons in the 100--1200 eV photon-energy range. A newly derived theoretical expression for nondipolar angular distributions characterizes the second-order effects using four new parameters with primary contributions from pure-quadrupole and octupole-dipole interference terms. Independent-particle calculations of these parameters account for a significant portion of the existing discrepancy between experiment and theory for Ne 2p first-order nondipole parameters
The random-phase approximation (RPA) is applied to study nondipole corrections to the angular distri...
Observations are reported for the first time of significant nondipole effects in the photoionization...
Lowest-order nondipole effects are studied systematically in double photoionization (DPI) of the He ...
Second-order [O(k2), k = ω/c] nondipole effects in soft-x-ray photoemission are demonstrated via an ...
Although breakdowns in the dipole approximation in the soft-X-ray photon-energy range (hν≤5 keV) wer...
The Xe 5s nondipole photoelectron parameter gamma is obtained experimentally and theoretically from ...
Modelling angular distributions of photoelectrons requires making accurate approximations of both th...
Over the past three decades, the dipole approximation has facilitated a basic understanding of the p...
Breakdowns in the dipole approximation in the soft-X-ray photon-energy range (hv \u3c 5 keV) were fi...
It is found that electric-dipole–electric-quadrupole E1- E2 interference effects at low photon energ...
The Xe 5s nondipole photoelectron parameter γ is obtained experimentally and theoretically from thre...
Although breakdowns in the dipole approximation in the soft-X-ray photon-energy range (hv \u3c 5 keV...
We scrutinize individual interchannel coupling effects on atomic dipole and nondipole [Formula Prese...
The nondipole corrections to the dipole approximation for the angular distribution of photoelectrons...
Angular distributions of valence photoelectrons showing effects due to higher-multipole photon inte...
The random-phase approximation (RPA) is applied to study nondipole corrections to the angular distri...
Observations are reported for the first time of significant nondipole effects in the photoionization...
Lowest-order nondipole effects are studied systematically in double photoionization (DPI) of the He ...
Second-order [O(k2), k = ω/c] nondipole effects in soft-x-ray photoemission are demonstrated via an ...
Although breakdowns in the dipole approximation in the soft-X-ray photon-energy range (hν≤5 keV) wer...
The Xe 5s nondipole photoelectron parameter gamma is obtained experimentally and theoretically from ...
Modelling angular distributions of photoelectrons requires making accurate approximations of both th...
Over the past three decades, the dipole approximation has facilitated a basic understanding of the p...
Breakdowns in the dipole approximation in the soft-X-ray photon-energy range (hv \u3c 5 keV) were fi...
It is found that electric-dipole–electric-quadrupole E1- E2 interference effects at low photon energ...
The Xe 5s nondipole photoelectron parameter γ is obtained experimentally and theoretically from thre...
Although breakdowns in the dipole approximation in the soft-X-ray photon-energy range (hv \u3c 5 keV...
We scrutinize individual interchannel coupling effects on atomic dipole and nondipole [Formula Prese...
The nondipole corrections to the dipole approximation for the angular distribution of photoelectrons...
Angular distributions of valence photoelectrons showing effects due to higher-multipole photon inte...
The random-phase approximation (RPA) is applied to study nondipole corrections to the angular distri...
Observations are reported for the first time of significant nondipole effects in the photoionization...
Lowest-order nondipole effects are studied systematically in double photoionization (DPI) of the He ...