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Nonlinear optical properties of As20S80 system chalcogenide glass using Z-scan and its strip waveguide under bandgap light using the self-phase modulation
Author(s) -
L. E. Zou,
Peng He,
B. X. Chen,
Mamoru Iso
Publication year - 2017
Publication title -
aip advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.421
H-Index - 58
ISSN - 2158-3226
DOI - 10.1063/1.4976107
Subject(s) - chalcogenide , materials science , full width at half maximum , band gap , figure of merit , optics , refractive index , modulation (music) , optoelectronics , chalcogenide glass , waveguide , phase (matter) , phase modulation , physics , phase noise , quantum mechanics , acoustics
Optical nonlinearities in the undoped As20S80, low doped P2As20S78 and Sn1As20S79 chacogenide glasses are investigated by using Z-scan method. These experiments show that at 1064 nm the figure of merit (FOM) for As20S80 is ∼1.02, while for Sn1As20S79 increases to ∼1.42, and for P2As20S78 decreases to ∼0.83. These resulted data indicate the addition of Sn in As20S80 system chalcogenide glass can enhance FOM due to creating narrow energy gaps. In addition, the self-phase modulation (SPM) width experiment for Sn1As20S79 strip waveguide displays that the full width half maximum (FWHM) of spectral width increases approximately 0.8 nm under the induction of bandgap light, meaning that the bandgap light can induce to enhance its optical nonlinearity with the nonlinear refractive index of n2≅5.27×10−14 cm2/W

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