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3D photo-responsive optical devices manufactured by advanced printing technologies

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arxiv 1904.06255 v1 pith:KVPXQYE4 submitted 2019-04-12 physics.app-ph physics.optics

3D photo-responsive optical devices manufactured by advanced printing technologies

classification physics.app-ph physics.optics
keywords opticaldeviceslightmaterialsphoto-responsiveprintingpropertiestechnologies
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Photonic components responsive to external optical stimuli are attracting increasing interest, because their properties can be manipulated by light with fast switching times, high spatial definition, and potentially remote control. These aspects can be further enhanced by novel architectures, which have been recently enabled by the availability of 3D printing and additive manufacturing technologies. However, current methods are still limited to passive optical materials, whereas photo-responsive materials would require the development of 3D printing techniques able to preserve the optical properties of photoactive compounds and to achieve high spatial resolution to precisely control the propagation of light. Also, optical losses in 3D printed materials are an issue to be addressed. Here we report on advanced additive manufacturing technologies, specifically designed to embed photo-responsive compounds in 3D optical devices. The properties of 3D printed devices can be controlled by external UV and visible light beams, with characteristic switching times in the range 1-10 s.

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