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34 Publications


2013 | Journal Article | LibreCat-ID: 18476
HOMO band dispersion of crystalline rubrene: Effects of self-energy corrections within the GW approximation
S. Yanagisawa, Y. Morikawa, A. Schindlmayr, Physical Review B 88 (2013).
LibreCat | Files available | DOI | WoS
 

2012 | Journal Article | LibreCat-ID: 18542
Hybrid functionals and GW approximation in the FLAPW method
C. Friedrich, M. Betzinger, M. Schlipf, S. Blügel, A. Schindlmayr, Journal of Physics: Condensed Matter 24 (2012).
LibreCat | Files available | DOI | WoS | PubMed | Europe PMC
 

2011 | Journal Article | LibreCat-ID: 4091
Simulation of the ultrafast nonlinear optical response of metal slabs
M. Wand, A. Schindlmayr, T. Meier, J. Förstner, Physica Status Solidi B 248 (2011) 887–891.
LibreCat | Files available | DOI | WoS
 

2011 | Conference Paper | LibreCat-ID: 4048
Theoretical approach to the ultrafast nonlinear optical response of metal slabs
M. Wand, A. Schindlmayr, T. Meier, J. Förstner, in: CLEO:2011 - Laser Applications to Photonic Applications , Optical Society of America, 2011.
LibreCat | Files available | DOI | WoS
 

2010 | Book Chapter | LibreCat-ID: 18549
First-principles calculation of electronic excitations in solids with SPEX
A. Schindlmayr, C. Friedrich, E. Şaşıoğlu, S. Blügel, in: F.M. Dolg (Ed.), Modern and Universal First-Principles Methods for Many-Electron Systems in Chemistry and Physics, Oldenbourg, München, 2010, pp. 67–78.
LibreCat | DOI
 

2010 | Journal Article | LibreCat-ID: 18557
First-principles calculation of electronic excitations in solids with SPEX
A. Schindlmayr, C. Friedrich, E. Şaşıoğlu, S. Blügel, Zeitschrift Für Physikalische Chemie 224 (2010) 357–368.
LibreCat | Files available | DOI | WoS
 

2010 | Journal Article | LibreCat-ID: 18560
Wannier-function approach to spin excitations in solids
E. Şaşıoğlu, A. Schindlmayr, C. Friedrich, F. Freimuth, S. Blügel, Physical Review B 81 (2010).
LibreCat | Files available | DOI | WoS
 

2010 | Journal Article | LibreCat-ID: 18558
Efficient implementation of the GW approximation within the all-electron FLAPW method
C. Friedrich, S. Blügel, A. Schindlmayr, Physical Review B 81 (2010).
LibreCat | Files available | DOI | WoS
 

2010 | Journal Article | LibreCat-ID: 13573
Do we know the band gap of lithium niobate?
C. Thierfelder, S. Sanna, A. Schindlmayr, W.G. Schmidt, Physica Status Solidi C 7 (2010) 362–365.
LibreCat | Files available | DOI | WoS
 

2010 | Journal Article | LibreCat-ID: 18562
Electronic structure and effective masses in strained silicon
M. Bouhassoune, A. Schindlmayr, Physica Status Solidi C 7 (2010) 460–463.
LibreCat | Files available | DOI | WoS
 

2009 | Conference Paper | LibreCat-ID: 18634
Optical conductivity of metals from first principles
A. Schindlmayr, in: D.N. Chigrin (Ed.), Theoretical and Computational Nanophotonics: Proceedings of the 2nd International Workshop, American Institute of Physics, 2009, pp. 157–159.
LibreCat | Files available | DOI | WoS
 

2009 | Journal Article | LibreCat-ID: 18636
Efficient calculation of the Coulomb matrix and its expansion around k=0 within the FLAPW method
C. Friedrich, A. Schindlmayr, S. Blügel, Computer Physics Communications 180 (2009) 347–359.
LibreCat | Files available | DOI | WoS
 

2009 | Journal Article | LibreCat-ID: 18632
Measurement of effective electron mass in biaxial tensile strained silicon on insulator
S.F. Feste, T. Schäpers, D. Buca, Q.T. Zhao, J. Knoch, M. Bouhassoune, A. Schindlmayr, S. Mantl, Applied Physics Letters 95 (2009).
LibreCat | Files available | DOI | WoS
 

2008 | Journal Article | LibreCat-ID: 18564
Screening in two dimensions: GW calculations for surfaces and thin films using the repeated-slab approach
C. Freysoldt, P. Eggert, P. Rinke, A. Schindlmayr, M. Scheffler, Physical Review B 77 (2008).
LibreCat | Files available | DOI | WoS
 

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