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Theoretical Optics & Photonics
Institut für Physik - Humboldt-Universität zu Berlin and Max-Born-Institut
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Francesco Intravaia
Francesco Intravaia
Dr. Francesco Intravaia
Post Doc
3'312
+49 [30] 2093 82457
+49 [30] 2093 82451
francesco.intravaia@physik.hu-berlin.de
Humboldt-University - Institute for Physics - TOP
Lise-Meitner-Haus
Newtonstrasse 15
12489
Berlin
Germany
Photonic Nanostructures
Plasmonics
Quantum Photonics
Fluctuation-Induced Phenomena
Publications
Publications
Nonequilibrium Casimir-Polder plasmonic interactions
N. Bartolo, R. Messina, D. A. R. Dalvit, and F. Intravaia (2016)
Physical Review A 93:042111
Determining graphene's induced band gap with magnetic and electric emitters
Werra, JFM, Krüger, P, Busch, K, and Intravaia, F (2016)
Physical Review B 93:081404(R)
TE resonances in graphene-dielectric structures
Werra, JFM, Intravaia, F, and Busch, K (2016)
Journal of Optics 18:034001
Fluorescence in nonlocal dissipative periodic structures
Intravaia, F and Busch, K (2015)
Physical Review A 91:053836
Friction forces on atoms after acceleration
Intravaia, F, Mkrtchian, VE, Buhmann, SY, Scheel, S, Dalvit, DAR, and Henkel, C (2015)
Journal of Physics: Condensed Matter 27:214020
Quantum friction and fluctuation theorems
F. Intravaia, R. O. Behunin, and D. A. R. Dalvit (2014)
Physical Review A 89:050101(R)
Spoof polariton enhanced modal density of states in planar nanostructured metallic cavities
P. S. Davids, F. Intravaia, and D.A.R. Dalvit (2014)
Optics Express 22:12424
Mode structure and polaritonic contributions to the Casimir effect in a magnetodielectric cavity
Harald R. Haakh and Francesco Intravaia (2013)
Physical Review A 88:052503
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People
Current teaching
Fundamentals of Optical Sciences
Laserphysik
Non-Hermitian Photonics
Newest publications
Breakdown of temporal-coupled-mode theory under multiple excitations with destructive interference
Tailoring the nonclassicality of light states via mode detuning in waveguide beam splitters
Electron beams traversing spherical nanoparticles: Analytic and numerical treatment
Time-domain modeling of interband transitions in plasmonic systems
High-accuracy Casimir-Polder force calculations using the Discontinuous Galerkin Time-Domain method
Theoretical Optics & Photonics
Department of Physics - HU zu Berlin
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