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Dive into the research topics where Egil Andersson is active.

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Featured researches published by Egil Andersson.


Journal of Physical Chemistry B | 2009

Local Electronic Structure of Functional Groups in Glycine As Anion, Zwitterion, and Cation in Aqueous Solution

Johan Gråsjö; Egil Andersson; Johan Forsberg; Laurent Duda; Ev Henke; Wandared Pokapanich; Olle Björneholm; Joakim Andersson; Annette Pietzsch; Franz Hennies; Jan-Erik Rubensson

Nitrogen and oxygen K emission spectra of glycine in the form of anions, zwitterions, and cations in aqueous solution are presented. It is shown that protonation has a dramatic influence on the local electronic structure and that the functional groups give a distinct spectral fingerprint.


Journal of Chemical Physics | 2010

Triple ionization spectra by coincidence measurements of double Auger decay: The case of OCS

John H. D. Eland; M. Hochlaf; P. Linusson; Egil Andersson; Lage Hedin; Raimund Feifel

By combining multiple electron coincidence detection with ionization by synchrotron radiation, we have obtained resolved spectra of the OCS(3+) ion created through the double Auger effect. The form of the spectra depends critically on the identity of the atom bearing the initial hole. High and intermediate level electron structure calculations lead to an assignment of the resolved spectrum from ionization via the S 2p hole. From the analysis it appears that the double Auger effect from closed shell molecules favors formation of doublet states over quartet states. Molecular field effects in the double Auger effect are similar to those in the single Auger effect in linear molecules.


Journal of Physical Chemistry B | 2009

Electronic structure of water molecules confined in a micelle lattice

Johan Gråsjö; Egil Andersson; Johan Forsberg; Emad F. Aziz; Barbara Brena; Christian Johansson; Joseph Nordgren; Laurent Duda; Joakim Andersson; Franz Hennies; Jan-Erik Rubensson; Per Hansson

Oxygen K absorption and emission spectra of water molecules confined in dodecyltrimethyl ammonium chloride micelle structures are presented. The local electronic structure of the water molecules is found to be dramatically different from the electronic structure of water molecules in the gas-phase as well as in liquid water. Hybridization with states of the ions in the surrounding ions is directly observed, and evidence for stabilization of the water molecules relative to molecules in bulk water is found.


Journal of Chemical Physics | 2010

Spectra of the triply charged ion CS23+ and selectivity in molecular Auger effects

John H. D. Eland; C. F. Rigby; Egil Andersson; J. Palaudoux; L. Andric; F. Penent; P. Linusson; Lage Hedin; Leif Karlsson; Jan-Erik Rubensson; Yasumasa Hikosaka; K Ito; P. Lablanquie; Raimund Feifel

Spectra of triply charged carbon disulphide have been obtained by measuring, in coincidence, all three electrons ejected in its formation by photoionization. Measurements of the CS(2)(3+) ion in coincidence with the three electrons identify the energy range where stable trications are formed. A sharp peak in this energy range is identified as the (2)Pi ground state at 53.1+/-0.1 eV, which is the lowest electronic state according to ab initio molecular orbital calculations. Triple ionization by the double Auger effect is provisionally divided, on the basis of the pattern of energy sharing between the two Auger electrons into contributions from direct and cascade Auger processes. The spectra from the direct double Auger effect via S 2p, S 2s, and C 1s hole states contain several resolved features and show selectivity based on the initial charge localization and on the identity of the initial state. Triple ionization spectra from single Auger decay of S 2p-based core-valence states CS(2)(2+) show retention of the valence holes in this Auger process. Related ion-electron coincidence measurements give the triple ionization yields and the breakdown patterns in triple photoionization at selected photon energies from 90 eV to above the inner shell edges.


Journal of Chemical Physics | 2010

Core-valence double photoionization of the CS2 molecule

Egil Andersson; Johannes Niskanen; Lage Hedin; J.H.D. Eland; P. Linusson; Leif Karlsson; Jan-Erik Rubensson; Vincenzo Carravetta; Hans Ågren; Raimund Feifel

Double photoionization spectra of the CS(2) molecule have been recorded using the TOF-PEPECO technique in combination with synchrotron radiation at the photon energies hν=220, 230, 240, 243, and 362.7 eV. The spectra were recorded in the S 2p and C 1s inner-shell ionization regions and reflect dicationic states formed out of one inner-shell vacancy and one vacancy in the valence region. MCSCF calculations were performed to model the energies of the dicationic states. The spectra associated with a S 2p vacancy are well structured and have been interpreted in some detail by comparison to conventional S 2p and valence photoelectron spectra. The lowest inner-shell-valence dicationic state is observed at the vertical double ionization energy 188.45 eV and is associated with a (2p(3/2))(-1)(2π(g))(-1) double vacancy. The spectrum connected to the C 1s vacancy shows a distinct line at 310.8 eV, accompanied by additional broad features at higher double ionization energies. This line is associated with a (C 1s)(-1)(2π(g))(-1) double vacancy.


Journal of Chemical Physics | 2008

Double photoionization of thiophene and bromine-substituted thiophenes.

P. Linusson; Loriano Storchi; Filip Heijkenskjöld; Egil Andersson; M. Elshakre; B. Pfeifer; Meryll Colombet; John H. D. Eland; L. Karlsson; Jan-Erik Rubensson; Francesco Tarantelli; R. Feifel

We report the double photoionization spectra of thiophene, 3-bromothiophene, and 3,4-dibromothiophene using a coincidence spectroscopy technique based on electron time-of-flight measurements. Spectra have been recorded between the onset and 40.814 eV using He IIalpha radiation. The He I photoelectron spectrum of 3,4-dibromothiophene has also been measured. All the spectra have been analyzed and interpreted in detail on the basis of theoretical simulations from accurate Greens function calculations.


Chemical Physics Letters | 2010

Triple ionisation of methane by double Auger and related pathways

John H. D. Eland; P. Linusson; Lage Hedin; Egil Andersson; Jan-Erik Rubensson; Raimund Feifel


Physical Review A | 2008

Coincidence technique using synchrotron radiation for triple photoionization: Results on rare gas atoms

John H. D. Eland; P. Linusson; Lage Hedin; Egil Andersson; Jan-Erik Rubensson; Raimund Feifel


Physical Review A | 2010

Experimental and theoretical study of core-valence double photoionization of OCS

Johannes Niskanen; Vincenzo Carravetta; Olav Vahtras; Hans Ågren; H. Aksela; Egil Andersson; Lage Hedin; P. Linusson; John H. D. Eland; Leif Karlsson; Jan-Erik Rubensson; Raimund Feifel


Physical Review A | 2008

Single-photon core-valence double ionization of molecular oxygen

Egil Andersson; Michael Stenrup; J.H.D. Eland; Lage Hedin; M. Berglund; L. Karlsson; Åsa Larson; Hans Ågren; Jan Erik Rubensson; Raimund Feifel

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Hans Ågren

Royal Institute of Technology

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