Ferroelectric domains have been generated on the +z and the -z faces of congruent undoped lithium niobate (LiNbO3) single crystals by direct UV writing using a continuous wave (c.w.) frequency doubled argon ion laser (lambda = 244 nm). The width of the domains was observed to depend on the intensity of the laser beam. Interestingly, also the contrast of the domains seen by piezoresponse force microscopy (PFM) [1] was observed to increase with higher laser intensity. The contrast difference could be attributed to a difference of the depth of these surface domains as the depth sensitivity of the PFM is ~1 µm for LiNbO3
Continuous wave ultraviolet (UV) laser irradiation at lambda=244 nm on the +z face of undoped and Mg...
The development of methods for ferroelectric domain engineering in lithium niobate (LN) is of specia...
The ability to manipulate the size and depth of poling inhibited domains, which are produced by UV l...
Ferroelectric domain reversal has been achieved by scanning a tightly focused, strongly absorbed ult...
We report ferroelectric domain inversion in strontium barium niobate (SBN) single crystals by irradi...
Ferroelectric domain inversion has been achieved on the +z and the -z faces of congruent undoped lit...
Ferroelectric domains are engineered in lithium niobate crystals by scanning strongly absorbed UV la...
Single-crystal congruent lithium niobate samples have been illuminated on the +z crystal face by pul...
The inversion of ferroelectric domains in lithium niobate by a scanning focused ultra-violet laser b...
Ferroelectric domain engineering in lithium niobate (LN) is a subject of extensive research mainly f...
Fabrication of periodically inverted domain patterns in ferroelectric materials such as lithium niob...
UV radiation in the spectral region beyond ~ 320 nm is strongly absorbed by lithium niobate single c...
The influence of laser illumination on ferroelectric domain engineering, waveguide formation and sur...
We report the formation of ordered sub-micron periodic surface domains on the -z face of congruent u...
Continuous wave ultraviolet laser irradiation at λ = 244 - 305 nm of the +z face of congruent and Mg...
Continuous wave ultraviolet (UV) laser irradiation at lambda=244 nm on the +z face of undoped and Mg...
The development of methods for ferroelectric domain engineering in lithium niobate (LN) is of specia...
The ability to manipulate the size and depth of poling inhibited domains, which are produced by UV l...
Ferroelectric domain reversal has been achieved by scanning a tightly focused, strongly absorbed ult...
We report ferroelectric domain inversion in strontium barium niobate (SBN) single crystals by irradi...
Ferroelectric domain inversion has been achieved on the +z and the -z faces of congruent undoped lit...
Ferroelectric domains are engineered in lithium niobate crystals by scanning strongly absorbed UV la...
Single-crystal congruent lithium niobate samples have been illuminated on the +z crystal face by pul...
The inversion of ferroelectric domains in lithium niobate by a scanning focused ultra-violet laser b...
Ferroelectric domain engineering in lithium niobate (LN) is a subject of extensive research mainly f...
Fabrication of periodically inverted domain patterns in ferroelectric materials such as lithium niob...
UV radiation in the spectral region beyond ~ 320 nm is strongly absorbed by lithium niobate single c...
The influence of laser illumination on ferroelectric domain engineering, waveguide formation and sur...
We report the formation of ordered sub-micron periodic surface domains on the -z face of congruent u...
Continuous wave ultraviolet laser irradiation at λ = 244 - 305 nm of the +z face of congruent and Mg...
Continuous wave ultraviolet (UV) laser irradiation at lambda=244 nm on the +z face of undoped and Mg...
The development of methods for ferroelectric domain engineering in lithium niobate (LN) is of specia...
The ability to manipulate the size and depth of poling inhibited domains, which are produced by UV l...