Direct UV laser writing on chromium coated lithium niobate (LiNbO3) crystals is found to produce spontaneous domain inversion associated with the exposed UV laser tracks. Experimental evidence suggests that this effect is attributed to local out-diffusion of oxygen, reducing the LiNbO3 crystal surface due to the presence of chromium. The thin chromium film becomes hot and reactive after absorbing the UV laser radiation thus acting as an oxygen getter. This very efficient process enables the inversion of domains at lower intensities as compared to other direct laser based poling methods practically eliminating the deleterious surface damage induced by the direct absorption of the UV laser radiation by the crystal. Furthermore, the versatilit...
We present a technique for domain engineering the surface of lithium niobate crystals with features ...
We report the formation of directionally-ordered nanoscale surface domains on the +z face of undoped...
The aim of this thesis is to investigate the influence of ultraviolet laser light on single crystal ...
Direct UV laser writing on chromium coated lithium niobate (LiNbO3) crystals is found to produce spo...
Ferroelectric domain inversion has been achieved on the +z and the -z faces of congruent undoped lit...
Ferroelectric domain engineering in lithium niobate (LN) is a subject of extensive research mainly f...
The inversion of ferroelectric domains in lithium niobate by a scanning focused ultra-violet laser b...
Continuous wave ultraviolet laser irradiation at λ = 244 - 305 nm of the +z face of congruent and Mg...
Continuous wave UV laser (λ=244 nm) irradiation of the +z face of lithium niobate single crystals in...
UV radiation in the spectral region beyond ~ 320 nm is strongly absorbed by lithium niobate single c...
Domains with a width of a few microns are engineered in lithium niobate crystals by irradiating the ...
The development of methods for ferroelectric domain engineering in lithium niobate (LN) is of specia...
Continuous wave ultraviolet (UV) laser irradiation at lambda=244 nm on the +z face of undoped and Mg...
Lithium niobate (LiNbO3) crystals have been widely used in many nonlinear optical processes such as ...
Fabrication of periodically inverted domain patterns in ferroelectric materials such as lithium niob...
We present a technique for domain engineering the surface of lithium niobate crystals with features ...
We report the formation of directionally-ordered nanoscale surface domains on the +z face of undoped...
The aim of this thesis is to investigate the influence of ultraviolet laser light on single crystal ...
Direct UV laser writing on chromium coated lithium niobate (LiNbO3) crystals is found to produce spo...
Ferroelectric domain inversion has been achieved on the +z and the -z faces of congruent undoped lit...
Ferroelectric domain engineering in lithium niobate (LN) is a subject of extensive research mainly f...
The inversion of ferroelectric domains in lithium niobate by a scanning focused ultra-violet laser b...
Continuous wave ultraviolet laser irradiation at λ = 244 - 305 nm of the +z face of congruent and Mg...
Continuous wave UV laser (λ=244 nm) irradiation of the +z face of lithium niobate single crystals in...
UV radiation in the spectral region beyond ~ 320 nm is strongly absorbed by lithium niobate single c...
Domains with a width of a few microns are engineered in lithium niobate crystals by irradiating the ...
The development of methods for ferroelectric domain engineering in lithium niobate (LN) is of specia...
Continuous wave ultraviolet (UV) laser irradiation at lambda=244 nm on the +z face of undoped and Mg...
Lithium niobate (LiNbO3) crystals have been widely used in many nonlinear optical processes such as ...
Fabrication of periodically inverted domain patterns in ferroelectric materials such as lithium niob...
We present a technique for domain engineering the surface of lithium niobate crystals with features ...
We report the formation of directionally-ordered nanoscale surface domains on the +z face of undoped...
The aim of this thesis is to investigate the influence of ultraviolet laser light on single crystal ...