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Simultaneous amplitude modulation and wavelength conversion in an asymmetric-duty-cycle periodically poled lithium niobate
期刊文章

Simultaneous amplitude modulation and wavelength conversion in an asymmetric-duty-cycle periodically poled lithium niobate

Y.H. Chen, F.C. Fan, Y.Y. Lin, Y.C. Huang, J.T. Shy, Y.P. LanY.F. Chen
Optics Communications, 卷.223(4-6), 頁碼.417-423
08/2003

摘要

Amplitude modulation Laser Nonlinear optics Wavelength conversion Atomic and Molecular Physics and Optics
We report the theory and experiment for an amplitude modulator and wavelength converter based on an electrode-coated asymmetric-duty-cycle periodically poled lithium niobate (PPLN). In a 56%/44% domain-duty-cycle PPLN crystal, we modulated the amplitude of the 532-nm second-harmonic output and measured a normalized half-wave voltage of 1.1V × d(μm)/l eff (cm), where d is the separation of the electrodes and l eff is the effective electrode length defined by the PPLN length multiplying the deviation of the domain-duty-cycle from the 50% value. A modulation depth of 85% was obtained in the linear modulation regime. We also derived a unified theory to describe the half-wave voltage for two types of PPLN-based amplitude modulators. © 2003 Elsevier Science B.V. All rights reserved.

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