Results 281 to 290 of about 311,604 (320)
Multiplane 2.5D microscopy for high-throughput high-resolution tissue imaging. [PDF]
Wang LM, Pandey D, Zhang W, Han KY.
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A near-infrared Sn-Pb perovskite imager with monolithic integration. [PDF]
Ge C +12 more
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Exploring the extremes: The cosmic laboratory. [PDF]
Huang Y, He S, Ge L, Li Z, Mao Y, Liu J.
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Laser Ablation Sampling With Low-Power Plasma: A LA-MIP-MS Instrument for Spaceflight. [PDF]
Farcy BJ +11 more
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Electroluminescent Thin Films for Integrated Optics Applications
C. C. Baker
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Application of the concept of Parity-Time symmetry to integrated optics
Vincent Brac de la Perrière
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Applied Optics, 2006
A light-driven micrometer-sized mechanical motor is created by laser-light-induced two-photon photopolymerization. All necessary components of the engine are built upon a glass surface by an identical procedure and include the following: a rigid mechanical framework, a rotor freely rotating on an axis, and an integrated optical waveguide carrying the ...
Lóránd, Kelemen +2 more
openaire +2 more sources
A light-driven micrometer-sized mechanical motor is created by laser-light-induced two-photon photopolymerization. All necessary components of the engine are built upon a glass surface by an identical procedure and include the following: a rigid mechanical framework, a rotor freely rotating on an axis, and an integrated optical waveguide carrying the ...
Lóránd, Kelemen +2 more
openaire +2 more sources
Advanced Materials, 2017
AbstractBio‐nanophotonics is a wide field in which advanced optical materials, biomedicine, fundamental optics, and nanotechnology are combined and result in the development of biomedical optical chips. Silk fibers or synthetic bioabsorbable polymers are the main light‐guiding components.
Amir Handelman +3 more
openaire +2 more sources
AbstractBio‐nanophotonics is a wide field in which advanced optical materials, biomedicine, fundamental optics, and nanotechnology are combined and result in the development of biomedical optical chips. Silk fibers or synthetic bioabsorbable polymers are the main light‐guiding components.
Amir Handelman +3 more
openaire +2 more sources
The 16th Annual Meeting of the IEEE Lasers and Electro-Optics Society, 2003. LEOS 2003., 2005
The optical (tele-) communication is the main driving force for the worldwide R&D on integrated optical devices and microsystems. lO-sensors have to compete with many other sensor types both within the optical domain (fiber sensors) and outside that domain, where sensors based on measurand induced changes of electrical conductivity or of mechanical
Lambeck, Paul, Hoekstra, Hugo
openaire +2 more sources
The optical (tele-) communication is the main driving force for the worldwide R&D on integrated optical devices and microsystems. lO-sensors have to compete with many other sensor types both within the optical domain (fiber sensors) and outside that domain, where sensors based on measurand induced changes of electrical conductivity or of mechanical
Lambeck, Paul, Hoekstra, Hugo
openaire +2 more sources

