A new optoelectronic memory device using critical band-to-band tunneling shows promise for high-speed, low-voltage operation ...
Rounding out the feature set is an integrated 4-channel LED strobe controller, binning with frame-rate boost, SafeTrigger, ...
D-MP-SIM revolutionizes live-cell fluorescence microscopy, enabling high-speed, high-resolution imaging with reduced motion ...
Linköping University findings suggest perovskite LEDs offer significant commercial potential, balancing technical performance with environmental sustainability.
UT Southwestern's innovative microscope integrates high and low-resolution imaging, facilitating advanced studies of cellular dynamics and disease processes.
Teledyne FLIR OEM, part of Teledyne Technologies Incorporated, today announced the availability of radiometric models of its high-performance Boson®+ thermal and HadronTM 640R+ dual thermal-visible ...
Photonic neuromorphic systems use light for high-speed computation, surpassing traditional electronics and driving innovations in AI and image processing.
Research from Osaka Metropolitan University reveals hyperspectral imaging can enhance biometric authentication and health ...
PicoQuant proudly announces the 30th anniversary of its Single Molecule Workshop, taking place in Berlin from September 23 to ...
A new study explores the development of Fiber Brillouin Amplifier Modules (FBAMs), enhancing optical frequency transfer for ...
A new optical semantic communication system using multimode fiber achieves seven-fold transmission capacity, improving data exchange and noise tolerance.
Curtin University researchers develop stable blue quantum dot LEDs, enhancing display technology with high efficiency and eco ...