We present the FERRUM Project, an international collaboration aiming at a production and evaluation of oscillator strengths (transition probabilities) of selected spectral lines of singly ionized iron group elements, that are of astrophysical relevance. The results obtained include measurements and calculations of permitted and forbidden lines of Fe II. The data have been applied to both emission and absorption lines in astrophysical spectra. We make comparisons between experimental, theoretical and astrophysical f-values. We give a general review of the various measurements, and discuss the UV8 multiplet of Fe II around 1610 Šin detail
We present an overview of current needs for accurate laboratory atomic transition probabilities (log...
The new generation of high resolution astronomical instruments such as the Hubble Space Telescope (H...
We report lifetime measurements of the 6 levels in the 3d6(5D)4d e6G term in Fe ii at an energy of 1...
We present the FERRUM Project, an international collaboration aiming at a production and evaluation ...
We report on an international collaboration, the FERRUM Project, whichaims at extending the database...
We report measurements of the relative intensities of 81 emission linesof Fe II between 160 nm and 3...
New measurements of radiative lifetimes of four 3d65s levelsin Fe II at about 10 eV are presented al...
We report on experimental branching fractions (BFs) for 19 transitions from the three 3d 5( 6S)4s4p(...
We report measurements of the relative intensities of 81 emission lines of Fe II between 160 nm and ...
We report on experimental branching fractions (BFs) for 19 transitions from the three 3d5(6S)4s4p(3...
We report on experimental transition probabilities for thirteenforbidden [Fe II] lines originating f...
We report on experimental transition probabilities for thirteen forbidden [Fe II] lines originating ...
We present a new set of oscillator strengths for 142 Fe II lines in the wavelength range 4000-8000 a...
Abstract. We present new calculations for transition probabilities of Fe IV, with much more extensiv...
We report lifetime measurements of the 6 levels in the 3d(6)(5D)4d e(6)G term in Fe II at an energy ...
We present an overview of current needs for accurate laboratory atomic transition probabilities (log...
The new generation of high resolution astronomical instruments such as the Hubble Space Telescope (H...
We report lifetime measurements of the 6 levels in the 3d6(5D)4d e6G term in Fe ii at an energy of 1...
We present the FERRUM Project, an international collaboration aiming at a production and evaluation ...
We report on an international collaboration, the FERRUM Project, whichaims at extending the database...
We report measurements of the relative intensities of 81 emission linesof Fe II between 160 nm and 3...
New measurements of radiative lifetimes of four 3d65s levelsin Fe II at about 10 eV are presented al...
We report on experimental branching fractions (BFs) for 19 transitions from the three 3d 5( 6S)4s4p(...
We report measurements of the relative intensities of 81 emission lines of Fe II between 160 nm and ...
We report on experimental branching fractions (BFs) for 19 transitions from the three 3d5(6S)4s4p(3...
We report on experimental transition probabilities for thirteenforbidden [Fe II] lines originating f...
We report on experimental transition probabilities for thirteen forbidden [Fe II] lines originating ...
We present a new set of oscillator strengths for 142 Fe II lines in the wavelength range 4000-8000 a...
Abstract. We present new calculations for transition probabilities of Fe IV, with much more extensiv...
We report lifetime measurements of the 6 levels in the 3d(6)(5D)4d e(6)G term in Fe II at an energy ...
We present an overview of current needs for accurate laboratory atomic transition probabilities (log...
The new generation of high resolution astronomical instruments such as the Hubble Space Telescope (H...
We report lifetime measurements of the 6 levels in the 3d6(5D)4d e6G term in Fe ii at an energy of 1...