A thin layer of silicon is transferred onto a lithium niobate substrate, forming a hybrid electro-optical platform, on which ring resonators are fabricated and characterized at 1550 nm, showing an optical loss of 3.0±0.5 dB/cm
Mid-infrared (3.39 μm) optical modulators are demonstrated for the first time on the silicon-on-lith...
Hybrid integration of silicon photonics with lithium niobate (LN) devices provides a promising route...
The heterogeneous integration of pre-fabricated lithium niobate photonic waveguide devices onto a si...
A thin layer of silicon is transferred onto a lithium niobate substrate, forming a hybrid electro-op...
Heterogeneous integration techniques, such as direct bonding, have enabled solutions to many problem...
A platform for the realization of tightly-confined lithium niobate photonic devices and circuits on ...
Heterogeneous integration techniques, such as direct bonding, have enabled solutions to many problem...
As silicon photonics has matured in the past decade, chip scale optics have become an enabling techn...
Lithium niobate (LiNbO3) and silicon (Si) have proven to be hugely important technological materials...
Electro-optic modulators (EOMs) serve as a technological pillar of the modern telecommunications ind...
AbstractThe high electro-optic coefficients and nonlinear coefficients of lithium niobate make it a ...
Compact electrooptical modulators are demonstrated on thin-film lithium niobate on silicon with half...
Mid-infrared (3.39 μm) optical modulators are demonstrated for the first time on the silicon-on-lith...
The availability of thin-film lithium niobate on insulator (LNOI) and advances in processing have le...
Heterogeneous integration of submicron films of lithium niobate on silicon substrates, rib-loaded wi...
Mid-infrared (3.39 μm) optical modulators are demonstrated for the first time on the silicon-on-lith...
Hybrid integration of silicon photonics with lithium niobate (LN) devices provides a promising route...
The heterogeneous integration of pre-fabricated lithium niobate photonic waveguide devices onto a si...
A thin layer of silicon is transferred onto a lithium niobate substrate, forming a hybrid electro-op...
Heterogeneous integration techniques, such as direct bonding, have enabled solutions to many problem...
A platform for the realization of tightly-confined lithium niobate photonic devices and circuits on ...
Heterogeneous integration techniques, such as direct bonding, have enabled solutions to many problem...
As silicon photonics has matured in the past decade, chip scale optics have become an enabling techn...
Lithium niobate (LiNbO3) and silicon (Si) have proven to be hugely important technological materials...
Electro-optic modulators (EOMs) serve as a technological pillar of the modern telecommunications ind...
AbstractThe high electro-optic coefficients and nonlinear coefficients of lithium niobate make it a ...
Compact electrooptical modulators are demonstrated on thin-film lithium niobate on silicon with half...
Mid-infrared (3.39 μm) optical modulators are demonstrated for the first time on the silicon-on-lith...
The availability of thin-film lithium niobate on insulator (LNOI) and advances in processing have le...
Heterogeneous integration of submicron films of lithium niobate on silicon substrates, rib-loaded wi...
Mid-infrared (3.39 μm) optical modulators are demonstrated for the first time on the silicon-on-lith...
Hybrid integration of silicon photonics with lithium niobate (LN) devices provides a promising route...
The heterogeneous integration of pre-fabricated lithium niobate photonic waveguide devices onto a si...