The alignment of nuclear states resonantly formed in nuclear excitation by electron capture (NEEC) is studied by means of a density matrix technique. The vibrational excitations of the nucleus are described by a collective model and the electrons are treated in a relativistic framework. Formulas for the angular distribution of photons emitted in the nuclear relaxation are derived. We present numerical results for alignment parameters and photon angular distributions for a number of heavy elements in the case of E2 nuclear transitions. Our results are intended to help future experimental attempts to discern NEEC from radiative recombination, which is the dominant competing process
The rate for the photon emission accompanying orbital 1S electron capture by the atomic nucleus is r...
The rate for the photon emission accompanying orbital 1S electron capture by the atomic nucleus is r...
We calculate the spatial correlation of electrons and positrons emitted by internal pair conversion ...
The alignment of nuclear states resonantly formed in nuclear excitation by electron capture (NEEC) i...
The resonant process of nuclear excitation by electron capture (NEEC) in collisions involving highly...
In the resonant process of nuclear excitation by electron capture (NEEC), a free electron is capture...
In the resonant process of nuclear excitation by electron capture (NEEC), a free electron recombines...
Angular distribution of x-rays emitted in the process of Dielectronic Recombination (DR) was studied...
We lay out a unified formalism for the description of radiative electron capture into excited states...
During recent years, a large number of experiments have been carried out at the GSI storage ring in ...
In high-energy atomic collisions between bare high-Z projectiles and low-Z target atoms, an electron...
The resonant process of nuclear excitation by electron transition (NEET) in highly charged ions is i...
We lay out a unified formalism for the description of radiative electron capture into excited states...
We report a measurement of KLL dielectronic recombination in charge states from Kr+34 through Kr+28 ...
In collisions of highly charged ions with electrons or light, ions are usually excited to one of the...
The rate for the photon emission accompanying orbital 1S electron capture by the atomic nucleus is r...
The rate for the photon emission accompanying orbital 1S electron capture by the atomic nucleus is r...
We calculate the spatial correlation of electrons and positrons emitted by internal pair conversion ...
The alignment of nuclear states resonantly formed in nuclear excitation by electron capture (NEEC) i...
The resonant process of nuclear excitation by electron capture (NEEC) in collisions involving highly...
In the resonant process of nuclear excitation by electron capture (NEEC), a free electron is capture...
In the resonant process of nuclear excitation by electron capture (NEEC), a free electron recombines...
Angular distribution of x-rays emitted in the process of Dielectronic Recombination (DR) was studied...
We lay out a unified formalism for the description of radiative electron capture into excited states...
During recent years, a large number of experiments have been carried out at the GSI storage ring in ...
In high-energy atomic collisions between bare high-Z projectiles and low-Z target atoms, an electron...
The resonant process of nuclear excitation by electron transition (NEET) in highly charged ions is i...
We lay out a unified formalism for the description of radiative electron capture into excited states...
We report a measurement of KLL dielectronic recombination in charge states from Kr+34 through Kr+28 ...
In collisions of highly charged ions with electrons or light, ions are usually excited to one of the...
The rate for the photon emission accompanying orbital 1S electron capture by the atomic nucleus is r...
The rate for the photon emission accompanying orbital 1S electron capture by the atomic nucleus is r...
We calculate the spatial correlation of electrons and positrons emitted by internal pair conversion ...