
Optically Aligned Molded Microlens Arrays on Multi-Core Fibers for
We experimentally demonstrate the feasibility of producing an array of polymer micro-lenses for multi-core single-mode fibers

We experimentally demonstrate the feasibility of producing an array of polymer micro-lenses for multi-core single-mode fibers

Here we show that microlens arrays obtained with the pyro-EHD self-assembling process exhibit high fill-factor and

As thin polymer layer on glass, Si, etc. High lateral and axial precision High chemical / thermal stability On top of processed wafers

Microlens arrays are the key component in the next generation of 3D imaging system, for it exhibits some good optical

Optically Aligned Molded Microlens Arrays on Multi-Core Fibers for Sub-Wavelength Focusing Abstract: We experimentally

Microlens arrays have become an essential component in fiber coupling systems due to their ability to improve

A tunable-focus liquid crystal microlens array is demonstrated and characterized. Using two-photon polymerization

We fabricated three distinctive microlens types: ball-type, fiber tip, and ball-type on a tapered fiber, demonstrating versatility in lens

By filling a very low viscosity prepolymer material into each circular hole via drop-on-demand printing, refractive lens

Silicon Micro Lens Coupling/Focusing Lenses for 1310-nm DFB and EAM Lasers Overview Broadcom single-channel silicon lenses

The compact fiber array design allows a high number of collimated output beams with minimal angular deviation. Thanks to precise

Our self-assembled microlens array has the merits of high optical performance, a simple fabrication procedure, and good mechanical

Microlens array with well-controlled curvature and smooth surface is required in various applications. Both focal length and the NA

We investigate how the fundamental mode of a fiber shrinks due to nonlinear self-focusing. Also, we simulate how a higher-order

Micro-lensed fibers require some features such as low coupling loss and wide tolerance to function in wavelength

A Microlens Array (MLA) is a lens module composed of multiple plano-convex lenses arranged in the same plane.

3D displays constructed by integrating microlens array with 2D displays. The morphology of microlens array controlled

GENERAL DESCRIPTION Microlens Arrays with superior form accuracy are used for applications, where reliability and highest

For easier handling and integration, the fiber assembly with MLA can be housed in a stainless steel flange. Active alignment of

Info-Box Technology demonstrator for microlens arrays (MLAs) facilitates testing in customer specific optical systems. Precision

Here we report a mold-free and self-assembly approach of mass-production of scalable MLAs, which can also have

Dip coating technique has the potential to provide a simpler and more cost-effective means of forming an optical fiber

Microlens arrays (MLAs) based on the selective wetting have opened new avenues for developing compact and miniaturized imaging

They are intended for free space coupling to other fiber arrays, photonic integrated circuits (PICs), or other

Liquid microlenses and their arrays (LMLAs) have emerged as a transformative platform in adaptive optics, offering

Then the vapor-induced dewetted SU-8 droplets were self-organized on O 2 -plasma-treated hydrophilic spots to form

Technology mastering Mastering by lithography and reflow Replication by UV polymer molding or Transfer to silicon, glass or fused
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