The monomode enhanced-index LiNbO3 waveguide fabricated by low-dose ion implantation is reported. LiNbO3 crystals were implanted with 3 MeV Si+ ions to doses around 10(14) ions/cm(2). After annealing, the waveguides were formed by the extraordinary refractive index enhancement in the waveguide regions. The effective extraordinary refractive index of the waveguide increased with ion implantation dose. The loss was 0.64 dB/cm in the X-cut sample with an implantation dose of 3.3x10(14) ions/cm(2). The scattering loss in the Z-cut samples was even lower than that in the X-cut samples. (C) 2001 American Institute of Physics.Physics, AppliedSCI(E)50ARTICLE95224-52268
A buried layer of damaged material with reduced refractive indices can result from implantation of M...
z-Cut stoichiometric lithium niobate crystals are implanted by 3.6 MeV Si2+ ions at doses of 3-10 x ...
We demonstrate a single-mode waveguide in LiNbO3 by use of both prism and end-face coupling methods....
The monomode enhanced-index LiNbO3 waveguide excited at 1540 nm is reported. X-cut LiNbO3 crystals w...
The X-cut, Y-propagation LiNbO3 crystals were implanted by 2.8 MeV P+ ions with doses of similar to1...
Optically polished LiNbO3 was implanted by 3.0 MeV B3+ ions at room temperature, forming planar opti...
A barrier planar waveguide was fabricated in z-cut LiNbdO(3) crystals by 4.5-MeV lithium ion implant...
6.0 MeV F3+ ions are implanted into x-cut LiNbO3 crystals in doses ranging from 3.0 x 10(13) to 1.0 ...
Single-mode waveguides in LiNbO3 are demonstrated by use of prism coupling method. The waveguides ar...
The optical waveguide was formed on an LiNbO3 substrate by 2.6 MeV nickel ions implantation to the d...
3.0 MeV Ni2+ in the beam doses from 1x10(13) to 9x10(14) ions/cm(2) are implanted into LiNbO3 single...
International audienceHeavy mass ions, Kr and Xe, having energies in the ~10 MeV/amu range have been...
The implantation of helium ions into lithium niobate produces a reduction in its refractive indices,...
The refractive indexes, material attenuation and damage fractions of a multi-step ion implanted Lith...
Single crystals of z-cut LiNbO3 were implanted at room temperature using 3.0 MeV oxygen ions at a fl...
A buried layer of damaged material with reduced refractive indices can result from implantation of M...
z-Cut stoichiometric lithium niobate crystals are implanted by 3.6 MeV Si2+ ions at doses of 3-10 x ...
We demonstrate a single-mode waveguide in LiNbO3 by use of both prism and end-face coupling methods....
The monomode enhanced-index LiNbO3 waveguide excited at 1540 nm is reported. X-cut LiNbO3 crystals w...
The X-cut, Y-propagation LiNbO3 crystals were implanted by 2.8 MeV P+ ions with doses of similar to1...
Optically polished LiNbO3 was implanted by 3.0 MeV B3+ ions at room temperature, forming planar opti...
A barrier planar waveguide was fabricated in z-cut LiNbdO(3) crystals by 4.5-MeV lithium ion implant...
6.0 MeV F3+ ions are implanted into x-cut LiNbO3 crystals in doses ranging from 3.0 x 10(13) to 1.0 ...
Single-mode waveguides in LiNbO3 are demonstrated by use of prism coupling method. The waveguides ar...
The optical waveguide was formed on an LiNbO3 substrate by 2.6 MeV nickel ions implantation to the d...
3.0 MeV Ni2+ in the beam doses from 1x10(13) to 9x10(14) ions/cm(2) are implanted into LiNbO3 single...
International audienceHeavy mass ions, Kr and Xe, having energies in the ~10 MeV/amu range have been...
The implantation of helium ions into lithium niobate produces a reduction in its refractive indices,...
The refractive indexes, material attenuation and damage fractions of a multi-step ion implanted Lith...
Single crystals of z-cut LiNbO3 were implanted at room temperature using 3.0 MeV oxygen ions at a fl...
A buried layer of damaged material with reduced refractive indices can result from implantation of M...
z-Cut stoichiometric lithium niobate crystals are implanted by 3.6 MeV Si2+ ions at doses of 3-10 x ...
We demonstrate a single-mode waveguide in LiNbO3 by use of both prism and end-face coupling methods....