Author of the publication

Large-area fabrication of TiN nanoantenna arrays for refractory plasmonics in the mid-infrared by femtosecond direct laser writing and interference lithography

, , , , , , , , , , , and . Optical Materials Express, 5 (11): 2625-2633 (2015)
DOI: 10.1364/OME.5.002625

Please choose a person to relate this publication to

To differ between persons with the same name, the academic degree and the title of an important publication will be displayed. You can also use the button next to the name to display some publications already assigned to the person.

 

Other publications of authors with the same name

Large-Area Low-Cost Plasmonic Perfect Absorber Chemical Sensor Fabricated by Laser Interference Lithography, , , , , and . ACS sensors, 1 (9): 1148-1154 (2016)Spectral shifts in optical nanoantenna-enhanced hydrogen sensors, , , , and . Optical materials express, 2 (2): 111-118 (2012)Large-Area Low-Cost Tunable Plasmonic Perfect Absorber in the Near Infrared by Colloidal Etching Lithography, , , , , and . Advanced optical materials, 3 (3): 398-403 (2015)A Switchable Mid-Infrared Plasmonic Perfect Absorber with Multispectral Thermal Imaging Capability, , , , , , , , , and . Advanced materials, 27 (31): 4597-4603 (2015)Active Chiral Plasmonics, , , , , , and . Nano letters, 15 (7): 4255-4260 (2015)Large-area fabrication of TiN nanoantenna arrays for refractory plasmonics in the mid-infrared by femtosecond direct laser writing and interference lithography, , , , , , , , , and 2 other author(s). Optical Materials Express, 5 (11): 2625-2633 (2015)Hybrid plasmonic devices for sensing and thermal imaging. Universität Stuttgart, Stuttgart, Dissertation, (2015)Long-term stability of capped and buffered palladium-nickel thin films and nanostructures for plasmonic hydrogen sensing applications, , and . Optical materials express, 3 (2): 194-204 (2013)Large-Area Low-Cost Plasmonic Perfect Absorber Chemical Sensor Fabricated by Laser Interference Lithography, , , , , and . ACS SENSORS, 1 (9): 1148-1154 (September 2016)Plasmonic gas and chemical sensing, , and . Nanophotonics, 3 (3): 157-180 (2014)