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Thermocapillary dewetting-based dynamic spatial light modulator
Accepted manuscript   Open access   Peer reviewed

Thermocapillary dewetting-based dynamic spatial light modulator

Dylan A. Kovacevich, Tianxing Ma, Michael P. Nitzsche, Valeria Saro-Cortes, Arielle R. Gamboa, Emily Davis and Jonathan P. Singer
Optics letters, Vol.46(15), pp.3721-3724
08/01/2021

Abstract

Dynamic spatial light modulators (SLMs) are capable of precisely modulating a beam of light by tuning the phase or intensity of an array of pixels in parallel. They can be utilized in applications ranging from image projection to beam front aberration and microscopic particle manipulation with optical tweezers. However, conventional dynamic SLMs are typically incompatible with high-power sources, as they contain easily damaged optically absorbing components. To address this, we present an SLM that utilizes a viscous film with a local thickness controlled via thermocapillary dewetting. The film is reflowable and can cycle through different patterns, representing, to the best of our knowledge, the first steps towards a dynamic optical device based on the thermocapillary dewetting mechanism.
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Accepted Manuscript (AM) (supplemental) Supporting Information Open Access
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https://doi.org/10.1364/OL.429994View
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