The F1500 Off-Axis Three-Mirror System revolutionizes on-orbit satellite imaging as an advanced optical solution.
The F1500 Off-Axis Three-Mirror System revolutionizes on-orbit satellite imaging as an advanced optical solution.
In high-performance optical engineering, cylindrical lenses are indispensable for breaking rotational symmetry and manipulating light in a single dimension. To integrate cylindrical optics effectively, critical engineering trade-offs are considered as theoretical design transitions to as-built reality.
Raman spectroscopy is a powerful analytical technique that provides insights into the molecular composition and structure of materials. Raman spectroscopy relies on the interaction between photons and molecular vibrations.
Avantier stands at the forefront of the Micro-Optics industry, offering original design solutions tailored to meet the unique demands of their clients. Learn about the various applications of micro-optics and how Avantier’s custom solutions can meet the needs of your specific project.
Optical surface accuracy is crucial for performance, measured using techniques like test plates, laser interferometers, and CGHs
Part 1 discussed the principles and customization options available through Avantier to accelerate research in flow cytometry. In Part 2, we will explore the advantages of customized components such as lenses, filters, mirrors, beamsplitters
Flow cytometry is a revolutionary technique that enables the comprehensive analysis of cells or particles in a high-throughput manner. By harnessing the principles of hydrodynamic focusing, electronic detection, and optical systems, flow cytometry provides valuable insights into cell populations
A beam splitter cube is a key component of a Polarizing Beam Splitter, also known as a polarization beam splitter or polarized beam splitter.
Fluorescence microscopy uses focused excitation light to stimulate labeled molecules, which emit longer-wavelength signals captured for imaging, enabling high-resolution visualization of specific structures despite challenges like weak signals.
Customization enhances the capabilities of fluorescence microscopy, optimizing the fluorescence microscope for high-resolution imaging.