Electro-optic spatial light modulator from an engineered organic layer | Nature Communications
Spatial light modulators (SLM) provide tailored light fields for many applications. Here, the authors present an SLM device based on an organic electro-optic material that manipulates the properties of individual pixels by electronic signals at speeds up to 50 MHz.
Download PDF Subjects Nanophotonics and plasmonics Optoelectronic devices and components Abstract Tailored nanostructures provide at-will control over the properties of light, with applications in imaging and spectroscopy. Active photonics can further open new avenues in remote monitoring, virtual or augmented reality and time-resolved sensing. Nanomaterials with χ (2) nonlinearities achieve highest switching speeds. Current demonstrations typically require a trade-off: they either rely on traditional χ (2) materials, which have low non-linearities, or on application-specific quantum well hete
Explore this link on the map →related reading
- New Optical Switch up to 1000x Faster Than Transistors - IEEE Spectrumspectrum.ieee.org
- Pulse-width modulation - Wikipediaen.wikipedia.org
- Sci-Hubsci-hub.box
- Electro-optic imaging enables efficient wide-field fluorescence lifetime microscopy | Nature Communicationsnature.com
- Optogenetics - Wikipediaen.wikipedia.org
- Designing a large field-of-view two-photon microscope using optical invariant analysis - PMCncbi.nlm.nih.gov
- Raman spectroscopy - Wikipediaen.wikipedia.org
- [2112.04909] A MEMS-based optical scanning system for precise, high-speed neural interfacingarxiv.org
- Digital light processing - Wikipediaen.wikipedia.org
- Molecular Computing | MIT Technology Reviewtechnologyreview.com
- Ultrasound-mediated optical tomography: a review of current methods - PMCpmc.ncbi.nlm.nih.gov
- Roadmap on wavefront shaping and deep imaging in complex media - IOPscienceiopscience.iop.org