103 research outputs found
Optical, vibrational, thermal, electrical, damage and phase-matching properties of lithium thioindate
Lithium thioindate (LiInS) is a new nonlinear chalcogenide biaxial
material transparent from 0.4 to 12 m, that has been successfully grown in
large sizes and good optical quality. We report on new physical properties that
are relevant for laser and nonlinear optics applications. With respect to
AgGaS(e) ternary chalcopyrite materials, LiInS displays a
nearly-isotropic thermal expansion behavior, a 5-times larger thermal
conductivity associated with high optical damage thresholds, and an extremely
low intensity-dependent absorption allowing direct high-power downconversion
from the near-IR to the deep mid-IR. Continuous-wave difference-frequency
generation (5-11m) of Ti:sapphire laser sources is reported for the first
time.Comment: 27 pages, 21 figures. Replaces the previous preprint
(physics/0307082) with the final version as it will be published in J. Opt.
Soc. Am. B 21(11) (Nov. 2004 issue
Le bébé né très prématurément, ses parents et les professionnels de soin : une co-construction de la maternalité ? (sous presse)
Far-infrared reflectivity spectra of ammonium dihydrogen phosphate in the para- and antiferroelectric phases
Analysis of the temperature-dependent lattice modes in potassium nitrate by infrared spectroscopy
Calculation of double-refraction walk-off angle along the phase-matching directions in non-linear biaxial crystals
Analysis of the temperature-dependent infrared active lattice modes in the ordered phase of sodium nitrate
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