|
10:30 |
O 85.1 |
Spectral near and far field characteristics of single plasmonic nanoantennas in the infrared — •F. Neubrech, P. Alonso Gonzalez, P. Albella, C. Huck, F. Casanova, L. E. Hueso, J. Chen, F. Golmar, A. Pucci, J. Aizpurua, and R. Hillenbrand
|
|
|
|
10:45 |
O 85.2 |
Local Enhancement of Optical Chirality in Planar and 3D Plasmonic Nanostructures — •Martin Schäferling, Mario Hentschel, Daniel Dregely, and Harald Giessen
|
|
|
|
11:00 |
O 85.3 |
Three-dimensional chiral plasmonic oligomers — •Mario Hentschel, Martin Schäferling, Thomas Weiss, Hans-Georg Kuball, Na Liu, and Harald Giessen
|
|
|
|
11:15 |
O 85.4 |
Simulation of Plasmonic Nanostructures using the Discontinuous Galerkin Time-Domain Method on Graphics Processing Units — •Richard Diehl, Jens Niegemann, and Kurt Busch
|
|
|
|
11:30 |
O 85.5 |
Plasmon resonances in atomic-scale gaps — •Johannes Kern, Swen Grossmann, Tim Häckel, Nadezda Tarakina, Monika Emmerling, Martin Kamp, Jer-Shing Huang, Paolo Biagioni, Jord C. Prangsma, and Bert Hecht
|
|
|
|
11:45 |
O 85.6 |
Quantum mechanic effects in nanoantenna enhanced infrared spectroscopy — •Jörg Bochterle, Frank Neubrech, and Annemarie Pucci
|
|
|
|
12:00 |
O 85.7 |
Detecting low concentrations of pollutant chemicals in water by SERS:Combining optimised nanoparticle ensembles and SERDS — •R. Ossig, Y.-H. Kwon, H.D. Kronfeldt, and F. Hubenthal
|
|
|
|
12:15 |
O 85.8 |
Plasmonic excitations in quasi 1d structures — •Ulrich Krieg, Christian Brand, Viktoria Meier, Herbert Pfnür, and Christoph Tegenkamp
|
|
|
|
12:30 |
O 85.9 |
Radiative cooling of nanoparticles close to a surface — •Maria Tschikin and Svend-Age Biehs
|
|
|
|
12:45 |
O 85.10 |
Spectral Shifts in Optical Nanoantenna-Enhanced Hydrogen Sensors — •Andreas Tittl, Christian Kremers, Jens Dorfmüller, Dmitry Chigrin, and Harald Giessen
|
|
|