[[abstract]]We found that the ferroelectric coercive field of LiTaO3, both in forward and reverse directions, can be increased in large amount by high power multiline argon laser illumination. This phenomenon is especially profound when the coercive field measurement is performed closer in time to the previous domain inversion operation. We also demonstrated that the domain in lithium-tantalate crystal can be patterned in accordance with the argon laser light distribution on the crystal plate surface. ©1996 American Institute of Physics.[[fileno]]2030150010020[[department]]電機工程學
Continuous wave ultraviolet (UV) laser irradiation at lambda=244 nm on the +z face of undoped and Mg...
The polarization reversal and domain structure evolution has been studied in stoichiometric lithium ...
Lithium niobate (LiNbO3) crystals have been widely used in many nonlinear optical processes such as ...
[[abstract]]We found the ferroelectric coercive field of LiTaO3, both in forward and reverse directi...
Quasi-phase matching by periodical inversion of ferroelectric domains can achieve high conversion ef...
We present a room temperature technique for optically inducing periodic domain-inverted structures i...
The influence of illumination on ferroelectric domain engineering in lithium niobate and lithium tan...
The influence of illumination on ferroelectric domain engineering in lithium niobate and lithium tan...
Ferroelectric domain engineering in lithium niobate (LN) is a subject of extensive research mainly f...
We report a room temperature technique for periodically inverting the domain structure in a lithium ...
Fabrication of periodically inverted domain patterns in ferroelectric materials such as lithium niob...
The combination of light with external electric fields has been successfully used for the domain eng...
This thesis presents the results of investigations into the thermal and optical control of ferroelec...
We report an order-of-magnitude reduction in the electric field required for domain nucleation in 1 ...
The experimentally measured coercive electric fields for domain reversal in ferroelectrics are typic...
Continuous wave ultraviolet (UV) laser irradiation at lambda=244 nm on the +z face of undoped and Mg...
The polarization reversal and domain structure evolution has been studied in stoichiometric lithium ...
Lithium niobate (LiNbO3) crystals have been widely used in many nonlinear optical processes such as ...
[[abstract]]We found the ferroelectric coercive field of LiTaO3, both in forward and reverse directi...
Quasi-phase matching by periodical inversion of ferroelectric domains can achieve high conversion ef...
We present a room temperature technique for optically inducing periodic domain-inverted structures i...
The influence of illumination on ferroelectric domain engineering in lithium niobate and lithium tan...
The influence of illumination on ferroelectric domain engineering in lithium niobate and lithium tan...
Ferroelectric domain engineering in lithium niobate (LN) is a subject of extensive research mainly f...
We report a room temperature technique for periodically inverting the domain structure in a lithium ...
Fabrication of periodically inverted domain patterns in ferroelectric materials such as lithium niob...
The combination of light with external electric fields has been successfully used for the domain eng...
This thesis presents the results of investigations into the thermal and optical control of ferroelec...
We report an order-of-magnitude reduction in the electric field required for domain nucleation in 1 ...
The experimentally measured coercive electric fields for domain reversal in ferroelectrics are typic...
Continuous wave ultraviolet (UV) laser irradiation at lambda=244 nm on the +z face of undoped and Mg...
The polarization reversal and domain structure evolution has been studied in stoichiometric lithium ...
Lithium niobate (LiNbO3) crystals have been widely used in many nonlinear optical processes such as ...