Engineers have built the first microscope to see inside living cells in sub-zero conditions, revealing secrets of Antarctic fish survival.
Researchers review how ultrafast XFEL techniques can reveal structural changes, metastable phases, and chemical reactions at ...
Gentec-EO announces the release of the UP100, the largest thermopile laser power detector in its portfolio, specifically ...
Chiral light influences stereoselective chemistry and biomolecular studies, enhancing understanding of chirality in chemical reactions and cellular functions.
The power and processing demands of AI infrastructure continue to escalate at a breakneck pace, driving unprecedented east-west (GPU to GPU) traffic to facilitate the parallel computations required ...
A laser-based mass spectrometry imaging method maps covalent drug-protein complexes in brain tissue, revealing spatial target engagement and blood-brain barrier penetration.
Advancements in waveguide and metasurface technologies are crucial for developing AR glasses that deliver superior depth-correct imagery and color fidelity.
Imagine electronics you can reprogram simply by shining a light on them. Researchers have created ultra-thin “smart” materials that do just that, a breakthrough that could lead to adaptable sensors, ...
Understanding how neural networks operate across the brain requires imaging electrical activity with both high temporal resolution and broad spatial coverage. To advance this field, a recent study ...
Optical coatings consist of one or more thin layers of material deposited onto an optical component, and the presence of these layers alters the way in which the optic reflects and transmits light.
Optical waveguides are structures designed to confine and guide light within a defined path. By controlling how electromagnetic waves propagate through a material, optical waveguides enable efficient, ...