A hyperbolic metamaterial layer on an ATR prism enhances evanescent wave penetration depth for biological material measurement.
A light diffusing body uses spherical micro-particles to scatter incident light through controlled Mie scattering mechanisms.
Segmenting the heavy electronics into a portable enclosure reduces device weight while optical fibers maintain immersive 3D visuals.
A bifocal optical element directs image light to separate image planes, resolving the vergence-accommodation conflict in head-mounted displays.
A naked-eye 3D backlight module uses convex lenses and polygonal prisms to direct light beams into multiple spatial directions.
An annular prism plate guides illumination light to ensure uniform central luminance in imaging devices.
A zoom lens system integrates a reflective optical element within a negative power lens unit to bend light and reduce device thickness.
Merges diffusing and prism sheet functions into one optical layer, reducing LCD thickness and manufacturing costs while maintaining brightness.
Orthogonal prism arrays on a light guide control the light distribution angle to enable a thin lighting device without deep mechanical structures.
Time division multiplexing directs light through optical channels to specific eye positions, eliminating optical cross-talk while maximizing pixel count.
An optical filter combines an interference layer and angle blocking layer to limit light transmission within a predetermined cone angle.
A polarization-selective element defines the light beam state from a VCSEL chip to stabilize optical power output.
Segmented prism sheet members insert into boundary gaps to hide non-display lines, reducing attachment difficulty and image distortion.
Interchangeable optical filters paired with a single rotating clear prism eliminate expensive colored prisms and complex mechanical arrangements.
A folded lens module uses perpendicular optical axes to expand the effective aperture diameter within constrained device height.
A projection optical system uses an intermediate image and path deflection to compress the device footprint.
A spectroscopic system uses a tilted prism surface to totally reflect light dispersed by a cholesteric liquid crystal layer.
Variable valley thickness patterns maintain adhesion integrity while eliminating chatter defects in flat panel displays.
A display device incorporates prism-based optical modulation components to refract light at preset angles, narrowing the viewing cone.
Freeform optics and prism assemblies direct light to a spatial light modulator, reducing stray light and improving color mode distribution in near-eye displays.
A holographic display apparatus widens the viewing window using an off-axis method with gratings and beam displacers to deflect light paths.
Intersecting optical paths in a light outputting apparatus allow light beams to overlap near the device, resolving insufficient intensity in close-range areas.
Stacked waveguide regions enable wavelength-independent phase control, resolving size constraints of Fresnel rhomb designs.
Alternating prism and flat areas on a condensing sheet reduce side lobes that degrade luminance and contrast ratio at viewing angles.
A segmented propagation unit directs electromagnetic waves through distinct paths to separate imaging signals from detection optics.
Porous dielectric structures reduce dichroic shift at large angles of incidence, improving light throughput and minimizing prism heating.
A microlens array spatially homogenizes laser energy before it reaches the substrate.
A composite prism beam separator redirects input light into distinct paths to form virtual images at infinity and near-field focal distances.
A covering device on a prism blocks stray light from reaching the receiver in optical measurement systems.
A freeform prism attachment redirects projector light back into user eyes for near-eye virtual reality presentation.
Bendable reflective layers redirect light to achieve true black display, solving incomplete light blocking from polarizer alignment errors.
Adjusting lens pattern sag from 0.01 to 0.3 minimizes total reflection, reducing optical loss and production costs in lighting devices.
Piezoelectric oscillation generates meandering mold patterns that enable two-dimensional light refraction, reducing moiré phenomena in prism sheets.
Segmented plane parts reflect measurement light in multiple directions, enabling high sensitivity surface analysis of small samples.
A dual lens optical system shares common components between still image and motion picture paths via a movable reflection member to reduce device complexity.
Wafer-level nano-imprinting fabricates integrated optical coupling devices with precise lens arrays, reducing fabrication costs and alignment errors.
Prism structures on transparent elements deflect edge display light rays, weakening visible borders without increasing splicing screen thickness or cost.
Fixed optical wedge cancels atmospheric spectral separation, eliminating complex adjustable optics to preserve spatial resolution.
Uniformly dispersed fluorescent powder in adhesive achieves high NTSC color gamut while maintaining stability against OLED degradation.
A vehicle lamp uses a tilted reflection plate and prism sheet to direct light through a hologram film for uniform distribution.
A thiourethane resin film with a sulfur to nitrogen molar ratio between 0.8 and 3 achieves high refractive index and low birefringence.
Non-parallel columnar structures reduce optical interference and Moiré patterns while maintaining at least 90% brightness gain.