We demonstrate low-loss coupling to single-mode fibers and photonic integrated circuits (PIC) using in-situ fabrication of free-form microlenses on device facets. Measured coupling losses down to 0.8 dB (0.5 dB) are achieved for chip-fiber (fiber-fiber) interfaces
The design, fabrication, and testing of diffractive microlens arrays for use in fiber optic intercon...
Multicore optical fibers and ribbons based on fiber arrays allow for massively parallel transmission...
Optoelectronic microsystems are more and more prevalent as researchers seek to increase transmission...
Single-mode optical coupling between fiber and photonic integrated circuit (PIC) requires precision ...
International audienceWe demonstrate the interest of expanded beam microlenses (around 55 µm of mode...
Direct coupling from fibres to waveguides requires field matching to achieve high coupling efficienc...
International audienceWe demonstrate the interest of expanded beam microlenses (around 55µm of mode ...
special issue « Fiber Optic Research in France » (Part II of III)International audienceIn this paper...
Providing efficient access from optical fibers to on-chip photonic systems is a key challenge for in...
International audienceSilicon nanophotonics represents a scalable route to deploy complex optical in...
We present a method for low loss coupling of multiple fibers to optical waveguides. Simultaneous ali...
Coupling of light between different photonic devices, for example on-chip waveguides, fibers, and fr...
Optical interconnects offer a promising solution to achieve a larger bandwidth distance product, int...
In this presentation, we give an overview of our recent progress in exploiting direct-write two-phot...
Over the last 20 years, silicon photonics has revolutionized the field of integrated optics, providi...
The design, fabrication, and testing of diffractive microlens arrays for use in fiber optic intercon...
Multicore optical fibers and ribbons based on fiber arrays allow for massively parallel transmission...
Optoelectronic microsystems are more and more prevalent as researchers seek to increase transmission...
Single-mode optical coupling between fiber and photonic integrated circuit (PIC) requires precision ...
International audienceWe demonstrate the interest of expanded beam microlenses (around 55 µm of mode...
Direct coupling from fibres to waveguides requires field matching to achieve high coupling efficienc...
International audienceWe demonstrate the interest of expanded beam microlenses (around 55µm of mode ...
special issue « Fiber Optic Research in France » (Part II of III)International audienceIn this paper...
Providing efficient access from optical fibers to on-chip photonic systems is a key challenge for in...
International audienceSilicon nanophotonics represents a scalable route to deploy complex optical in...
We present a method for low loss coupling of multiple fibers to optical waveguides. Simultaneous ali...
Coupling of light between different photonic devices, for example on-chip waveguides, fibers, and fr...
Optical interconnects offer a promising solution to achieve a larger bandwidth distance product, int...
In this presentation, we give an overview of our recent progress in exploiting direct-write two-phot...
Over the last 20 years, silicon photonics has revolutionized the field of integrated optics, providi...
The design, fabrication, and testing of diffractive microlens arrays for use in fiber optic intercon...
Multicore optical fibers and ribbons based on fiber arrays allow for massively parallel transmission...
Optoelectronic microsystems are more and more prevalent as researchers seek to increase transmission...