Ultrashort laser pulses have found widespread applications for precise ablation within the past years. However, these laser sources can also be used for volume structuring of transparent materials. This allows to obtain e.g. a localized refractive index modification within the bulk material as required for photonic components. In this paper we will summarize the different structural modifications which can be induced in lithium niobate (LiNbO3) using ultrashort pulses. LiNbO3 is one of the most important and versatile materials for various photonic applications due to its outstanding electrooptic, nonlinear and photorefractive properties. The origin of the induced modifications as well as the physical mechanisms responsible for the resulting refractive index changes will be discussed. Another focus will be on the use of these structures for optical waveguides. As an application example efficient frequency conversion within a waveguide in periodically poled LiNbO3 (PPLN) will be highlighted.

Femtosecond laser induced structural modifications in lithium niobate for integrated optical applications

Ancona A;
2007

Abstract

Ultrashort laser pulses have found widespread applications for precise ablation within the past years. However, these laser sources can also be used for volume structuring of transparent materials. This allows to obtain e.g. a localized refractive index modification within the bulk material as required for photonic components. In this paper we will summarize the different structural modifications which can be induced in lithium niobate (LiNbO3) using ultrashort pulses. LiNbO3 is one of the most important and versatile materials for various photonic applications due to its outstanding electrooptic, nonlinear and photorefractive properties. The origin of the induced modifications as well as the physical mechanisms responsible for the resulting refractive index changes will be discussed. Another focus will be on the use of these structures for optical waveguides. As an application example efficient frequency conversion within a waveguide in periodically poled LiNbO3 (PPLN) will be highlighted.
2007
Istituto di fotonica e nanotecnologie - IFN
9780912035888
Femto-second laser
Frequency conversions
Laser sources
Lithium niobate
Optical applications
Periodically poled
Photonic application
Photonic components
Photorefractive properties
Physical mechanism
Refractive index changes
Refractive-index modification
Structural modifications
Transparent material
Ultrashort laser pulse
Volume structuring
Integrated optics
Light refraction
Lithium
Niobium compounds
Photorefractive materials
Pulse generators
Refractive index
Refractometers
Ultrashort pulses
Waveguides
Pulsed laser applications
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/264381
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