Publications of Laura Foglia

Journal Article (6)

Journal Article
S.P.K. Vempati, L. Bogner, C. Richter, J.-C. Deinert, L. Foglia, L. Gierster and J. Stähler: Photoexcited organic molecules en route to highly efficient autoionization. The Journal of Chemical Physics 152 (7), 074715 (2020).
Journal Article
L. Foglia, S.P.K. Vempati, B. Tanda Bonkano, L. Gierster, M. Wolf, S. Sadofev and J. Stähler: Revealing the competing contributions of charge carriers, excitons, and defects to the non-equilibrium optical properties of ZnO. Structural Dynamics 6 (3), 034501 (2019).
Journal Article
L. Foglia, M. Wolf and J. Stähler: Ultrafast dynamics in solids probed by femtosecond time-resolved broadband electronic sum frequency generation. Applied Physics Letters 109 (20), 202106 (2016).
Journal Article
L. Foglia, L. Bogner, M. Wolf and J. Stähler: Localization-dependent charge separation efficiency at an organic/inorganic hybrid interface. Chemical Physics Letters 646, 25–30 (2016).
Journal Article
S. Wall, L. Foglia, D. Wegkamp, K. Appavoo, J. Nag, R.F. Haglund, J. Stähler and M. Wolf: Tracking the evolution of electronic and structural properties of VO2 during the ultrafast photoinduced insulator-metal transition. Physical Review B 87 (11), 115126 (2013).
Journal Article
S. Wall, D. Wegkamp, L. Foglia, K. Appavoo, J. Nag, R.F. Haglund Jr., J. Stähler and M. Wolf: Ultrafast changes in lattice symmetry probed by coherent phonons. Nature Communications 3, 721 (2012).

Conference Paper (1)

Conference Paper
M. Wolf, S. Wall, L. Foglia, K. Appavoo, J. Nag, R.F. Haglund and J. Stähler: Ultrafast changes in lattice symmetry probed by coherent phonons at the onset of the photoinduced phase transition in VO2. In: Optics InfoBase. Optical Society of America, , IW4D.1 (2012).

Talk (2)

Thesis - PhD (1)

Thesis - PhD
L. Foglia: Ultrafast dynamics and energy loss channels at a hybrid organic inorganic interface. Technische Universität Berlin

Thesis - Diploma (1)

Thesis - Diploma
L. Foglia: Transient reflectivity and coherent phonon generation: an ultrafast probe of the metal-to-insulator transition in VO2. Freie Universität Berlin
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