Plasmonic laser printing for functional metasurfaces

Xiaolong Zhu, M. S. Carstensen, Christoph Vannahme, Emil Højlund-Nielsen, N. Asger Mortensen, Anders Kristensen

Publikation: Kapitel i bog/rapport/konference-proceedingKonferenceabstrakt i proceedingsForskningpeer review

Abstract

Recently, we show a method of color printing on nanoimprinted plasmonic metasurfaces using laser post-writing. Laser pulses induce transient local heat generation that leads to melting and reshaping of the imprinted nanostructures [1]. Depending on the laser pulse energy density, different surface morphologies that support different plasmonic resonances can be created. This technology creates a laser printer capable of producing color images with a resolution up to 127,000 DPI. With tailored trains of laser pulses, multiple optical states are flatiron onto the metasurface film with a nanoscale controlling. Thus, this diffraction-limited-resolution optical writing process can be further used to demonstrate a variety of applications in addition to large-area structural color printing. Multi-focus Fresnel zone plates with subwavelength focus, and more meta-surfaces different functions, such as spectroscope filters, Raman substrates and biosensors are also applicable.
OriginalsprogEngelsk
Titel2016 Progress In Electromagnetic Research Symposium (PIERS)
Antal sider1
ForlagIEEE
Publikationsdato2016
Sider752-752
ISBN (Trykt)978-1-5090-6094-8
ISBN (Elektronisk)978-1-5090-6093-1
DOI
StatusUdgivet - 2016
Udgivet eksterntJa
BegivenhedProgress in Electromagnetic Research Symposium 2016 - Shanghai International Convention Center, Shanghai, Kina
Varighed: 8. aug. 201611. aug. 2016

Konference

KonferenceProgress in Electromagnetic Research Symposium 2016
LokationShanghai International Convention Center
Land/OmrådeKina
ByShanghai
Periode08/08/201611/08/2016

Fingeraftryk

Dyk ned i forskningsemnerne om 'Plasmonic laser printing for functional metasurfaces'. Sammen danner de et unikt fingeraftryk.

Citationsformater