We present a novel method for recording persistent holograms in doubly-doped LiNbO3. Simultaneous sensitization of the crystal by an inhomogeneous UV beam can result to 32 % diffraction efficiency recorded by red light in a 0.85 mm thick sample, while read-out with only red light is non-destructive. Rapid optical erasure by ultraviolet light is possible and light scattering is efficiently prevented
Photorefractive lithium niobate (LiNbO3) is a promising recording medium for holographic data storag...
We describe a two-center holographic recording method for the storage of persistent holograms in dou...
The diffraction efficiency of M holograms superimposed in the volume of the recording medium is prop...
We present a novel method for recording persistent holograms in doubly-doped LiNbO_3. Simultaneous s...
Persistent holograms are recorded locally with red light in a LiNbO>3 crystal doped with Mg and Fe. ...
Persistent holograms are recorded locally with red light in a LiNbO3 crystal doped with Mg and Fe. S...
Persistent holograms are recorded locally with red light in a LiNbO>3 crystal doped with Mg and Fe. ...
We present an efficient, non-volatile holographic storage scheme in doubly doped lithium niobate, wi...
We present an efficient, non-volatile holographic storage scheme in doubly doped lithium niobate, wi...
An efficient, non-volatile holographic storage scheme in doubly doped lithium niobate is presented. ...
Persistent holograms are recorded with red light in lithium niobate crystals doped with manganese an...
In holographic data storage, pages of information are overlapped in the volume of the recording medi...
Persistent holograms are recorded with red light in lithium niobate crystals doped with manganese an...
In holographic data storage, pages of information are overlapped in the volume of the recording medi...
We describe a two-center holographic recording method for the storage of persistent holograms in dou...
Photorefractive lithium niobate (LiNbO3) is a promising recording medium for holographic data storag...
We describe a two-center holographic recording method for the storage of persistent holograms in dou...
The diffraction efficiency of M holograms superimposed in the volume of the recording medium is prop...
We present a novel method for recording persistent holograms in doubly-doped LiNbO_3. Simultaneous s...
Persistent holograms are recorded locally with red light in a LiNbO>3 crystal doped with Mg and Fe. ...
Persistent holograms are recorded locally with red light in a LiNbO3 crystal doped with Mg and Fe. S...
Persistent holograms are recorded locally with red light in a LiNbO>3 crystal doped with Mg and Fe. ...
We present an efficient, non-volatile holographic storage scheme in doubly doped lithium niobate, wi...
We present an efficient, non-volatile holographic storage scheme in doubly doped lithium niobate, wi...
An efficient, non-volatile holographic storage scheme in doubly doped lithium niobate is presented. ...
Persistent holograms are recorded with red light in lithium niobate crystals doped with manganese an...
In holographic data storage, pages of information are overlapped in the volume of the recording medi...
Persistent holograms are recorded with red light in lithium niobate crystals doped with manganese an...
In holographic data storage, pages of information are overlapped in the volume of the recording medi...
We describe a two-center holographic recording method for the storage of persistent holograms in dou...
Photorefractive lithium niobate (LiNbO3) is a promising recording medium for holographic data storag...
We describe a two-center holographic recording method for the storage of persistent holograms in dou...
The diffraction efficiency of M holograms superimposed in the volume of the recording medium is prop...