Logo image
Nonlinear multiwavelength conversion based on an aperiodic optical superlattice in lithium niobate
Journal article   Open access   Peer reviewed

Nonlinear multiwavelength conversion based on an aperiodic optical superlattice in lithium niobate

Y.W. Lee, F.C. Fan, Y.C. Huang, B.Y. Gu, B.Z. Dong and M.H. Chou
Optics Letters, Vol.27(24), pp.2191-2193
12/2002

Abstract

Atomic and Molecular Physics and Optics
We have demonstrated what is to our knowledge the first successful achievement of multiwavelength conversion in an aperiodic optical superlattice (AOS) lithium niobate crystal with equalized gain. The two AOS devices in our experiment, numerically synthesized from 2857 crystal blocks with a unit block thickness of 3.5 μm, have fundamental wavelengths of 1540 and 1545 nm for double-wavelength second-harmonic generation (SHG) and of 1540, 1545, and 1553 nm for triple-wavelength SHG at 50 °C. Our experiment and simulation show that the output spectrum of an AOS wavelength converter is fairly insensitive to typical fabrication errors. © 2002 Optical Society of America.
pdf
Nonlinear_multiwavelength_conversion_based_on_an_aperiodic_optical_superlattice_in_lithium_niobate.pdfDownloadView
Open Access

Related links

Metrics

1 Record Views

Details

Logo image