Results 161 to 170 of about 4,144 (203)
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Compact lithium niobate plasmonic modulator

Optics Letters
Lithium niobate (LN)-based modulators offer superior modulation performances, including high-speed modulation, linearity, and temperature stability. However, these devices exhibit larger sizes due to the low light–matter interaction despite a significant electro-optic coefficient.
Myunghwan, Kim   +5 more
openaire   +2 more sources

Reaction of Lithium Tantalate (Niobate) with Lithium Carbonate

Russian Journal of Applied Chemistry, 2005
Reactions of crushed wastes from lithium tantalate (niobate) production with lithium carbonate were studied by thermal and X-ray analyses. Conditions for their most complete conversion into lithium orthotantalate (orthoniobate) were determined.
S. M. Masloboeva   +3 more
openaire   +1 more source

Integrated Lithium Niobate Photonics and Applications

Nonlinear Optics (NLO), 2019
I will present integrated LN photonics platform and its application in EO and Kerr frequency comb generation, super continuum generation, frequency conversion, and efficient EO modulation.
openaire   +1 more source

Microstructuring lithium niobate [PDF]

open access: possible, 2004
Lithium niobate is among the most important nonlinear optical materials used today in the photonics industry as it combines a variety of very important optical and electromechanical properties. Microstructuring of this material opens new possibilities for the utility of lithium niobate into a wider range of applications beyond the area of ...
openaire  

Thermomechanical and Thermophysical Properties of Lithium Niobate

Mechanics of Solids
A new thermodynamic model of lithium niobate is proposed, based on the use of the sixth-degree Landau potential. Its feature is the nonlinear dependence of the coefficient at the square of polarization along the polar direction on temperature. In contrast to the previously used fourth-degree potential, this ensures good agreement between the behavior ...
V. B. Shirokov   +3 more
openaire   +1 more source

Lithium Niobate

2009
Tatyana Volk, Manfred Wöhlecke
openaire   +2 more sources

The effects of lithium isotopic anomalies on lithium niobate

Ferroelectrics, 1987
The effects of variations in the isotopic ratios of lithium are discussed in light of their impact on critical compositions of lithium niobate. Such variations have been observed in naturally occurring as well as refined materials and can alter the atomic weight of lithium in these materials from the natural average of 6.9409 to as high as 7.015 or as ...
openaire   +1 more source

Advances in lithium niobate photonics: development status and perspectives

Advanced Photonics, 2022
Guanyu Chen, Lennon Lee, Nanxi Li
exaly  

Lithium Niobate

1974
T. F. Connolly, Donald T. Hawkins
openaire   +1 more source

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