DocumentCode :
3181
Title :
Theoretical Feasibility Demonstration for Over 100 GHz Electro-Optic Modulators With c-Axis Grown BaTiO 3 Crystal Thin-Films
Author :
DeGui Sun ; Jing Zhang ; Chen Chen ; Mei Kong ; Jun Wang ; Huilin Jiang
Author_Institution :
Sch. of Sci., Changchun Univ. of Sci. & Technol., Changchun, China
Volume :
33
Issue :
10
fYear :
2015
fDate :
May15, 15 2015
Firstpage :
1937
Lastpage :
1947
Abstract :
Single-channel 100 GHz and higher bandwidth external optical modulators are dramatically demanded to realize the aggregate carrier data rate of 100 Tb/s per optic-fiber in next-generation optical networks, but the current technologies used in industrial systems have never shown any feasibility to reach such high-speed operations. In this study, the feasible potential of ultrahigh bandwidths higher than 100 GHz are theoretically demonstrated for waveguide electro-optic (EO) modulators with c-axis-oriented BaTiO3 crystal thin-films. As the three dominant factors of determining the bandwidths of EO modulators, the interaction length L, the absolute refractive difference of light-wave and microwave |Nm-No| determining the velocity mismatch, and the microwave loss coefficient are investigated to realize the ultrahigh bandwidths of over 100 GHz, where L is a weight factor of both the velocity mismatch and the microwave loss. Thus, in this process, the nonlinear EO modulation effects are taken into account to determine the L values with respect to the values of EO coefficient r51 under a given half-wave voltage Vπ. Then, the optimal tradeoff conditions for the over 100 GHz bandwidths are obtained with the consistent relations among the interaction length, the optical loss, the electrode gap, and the overlap integral of optical and electrical fields, the refractive index difference between the optical guidedmode and the microwave. As a result, for an industrial acceptable Vπ of 5.0 V and a feasible absolute birefringence beo of 0.005, at the EO coefficient r51 values of over 550 pm/V an optimal device in both optical rib waveguide and microwave electrode dimensions shows the illustrative results of over 100 GHz bandwidth in the believable simulations albeit both the velocity mismatch and the microwave loss are taken into account in simulations under a microwave impedance- matching, which are all reachable in the real c-axis BaTiO3 crystal thin-film.
Keywords :
barium compounds; birefringence; electro-optical modulation; microwave photonics; nonlinear optics; optical losses; optical waveguides; refractive index; rib waveguides; thin films; titanium compounds; BaTiO3; absolute birefringence; c-axis grown barium titanate crystal thin-films; electrical fields; electrode gap; frequency 100 GHz; half-wave voltage; high-speed operations; interaction length; microwave electrode dimensions; microwave impedance matching; microwave loss coefficient; next-generation optical networks; nonlinear EO modulation effects; optic-fiber; optical loss; optical rib waveguide; refractive index difference; velocity mismatch determination; voltage 5.0 V; waveguide electro-optic modulators; Bandwidth; Crystals; Electrooptic modulators; Electrooptical waveguides; Optical refraction; 1-order and 2-order nonlinear EO modulation effects; BaTiO3 crystal thin-film; BaTiO3 crystal thin-film,; EO modulator; electro-optic (EO) modulator; first-order and second-order nonlinear EO modulation effects; half-wave voltage; interaction length; ultrahigh modulation bandwidth;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2015.2388738
Filename :
7001563
Link To Document :
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