The effect of chemical etching on the stability of domains in periodically poled stoichiometric lithium tantalate is studied by on-line second harmonic generation and microscopy. It is found that wet etching directly after poling leads to domain-wall movement, resulting in back-switching or domain merging. Head-to-head domains tend to backswitch, while tail-to-tail domains merge. For samples where the domain structure stabilized for longer time, no domain motion is observed when etched.QC 20170613</p
We have studied experimentally the interaction of isolated needle-like domains created in an array v...
A systematic analysis on the dynamics of the chemical etching of periodically poled lithium niobate ...
Static domain patterns produced by application of the external electric field in wide temperature ra...
The effect of chemical etching on the stability of domains in periodically poled stoichiometric lith...
The effect of chemical etching on the stability of domains in periodically poled stoichiometric lith...
Periodically poled LiTaO3 has a shorter cut-off wavelength than KTP and LiNbO3, which makes this mat...
Periodically poled LiTaO3 has a shorter cut-off wavelength than KTP and LiNbO3, which makes this mat...
We demonstrate surface periodic poling of Lithium Tantalate at high voltages. Periodic domain invers...
We demonstrate surface periodic poling of Lithium Tantalate at high voltages. Periodic domain invers...
We present detail investigation of the domain evolution in lithium niobate and lithium tantalate dur...
The morphology of a single charged domain wall, appeared under the action of composition gradients p...
We report a room temperature technique for periodically inverting the domain structure in a lithium ...
A systematic analysis on the dynamics of the chemical etching of periodically poled lithium niobate ...
A systematic analysis on the dynamics of the chemical etching of periodically poled lithium niobate ...
A systematic analysis on the dynamics of the chemical etching of periodically poled lithium niobate ...
We have studied experimentally the interaction of isolated needle-like domains created in an array v...
A systematic analysis on the dynamics of the chemical etching of periodically poled lithium niobate ...
Static domain patterns produced by application of the external electric field in wide temperature ra...
The effect of chemical etching on the stability of domains in periodically poled stoichiometric lith...
The effect of chemical etching on the stability of domains in periodically poled stoichiometric lith...
Periodically poled LiTaO3 has a shorter cut-off wavelength than KTP and LiNbO3, which makes this mat...
Periodically poled LiTaO3 has a shorter cut-off wavelength than KTP and LiNbO3, which makes this mat...
We demonstrate surface periodic poling of Lithium Tantalate at high voltages. Periodic domain invers...
We demonstrate surface periodic poling of Lithium Tantalate at high voltages. Periodic domain invers...
We present detail investigation of the domain evolution in lithium niobate and lithium tantalate dur...
The morphology of a single charged domain wall, appeared under the action of composition gradients p...
We report a room temperature technique for periodically inverting the domain structure in a lithium ...
A systematic analysis on the dynamics of the chemical etching of periodically poled lithium niobate ...
A systematic analysis on the dynamics of the chemical etching of periodically poled lithium niobate ...
A systematic analysis on the dynamics of the chemical etching of periodically poled lithium niobate ...
We have studied experimentally the interaction of isolated needle-like domains created in an array v...
A systematic analysis on the dynamics of the chemical etching of periodically poled lithium niobate ...
Static domain patterns produced by application of the external electric field in wide temperature ra...