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Demonstration of Optical Isolator with CeY_2Fe_5O_(12) Guiding Layer Employing Nonreciprocal Phase Shift
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作者 Kazumasa Sakurai hideki yokoi Tetsuya Mizumoto 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期169-170,共2页
A waveguide optical isolator with a CeY2Fe5O12 guiding layer employing a nonreciprocal phase shift was studied. The isolation ratio of more than 12.2 dB was achieved at a wavelength of 1.55μm.
关键词 of on AS by YIG Guiding Layer Employing Nonreciprocal Phase Shift Demonstration of Optical Isolator with CeY2Fe5O with
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Enhancement of Magneto-Optic Effect in Optical Isolator with Semiconductor Guiding Layer by Selective Oxidation of AlInAs
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作者 Takashi Sakai Yuya Shoji +1 位作者 hideki yokoi Tetsuya Mizumoto 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期179-180,共2页
Selective oxidation of an AlInAs layer was investigated for enhancement of magneto-optic effect in an optical isolator. Twelve times nonreciprocal phase shift enhancement was estimated from a measured AlInAs-oxide ref... Selective oxidation of an AlInAs layer was investigated for enhancement of magneto-optic effect in an optical isolator. Twelve times nonreciprocal phase shift enhancement was estimated from a measured AlInAs-oxide refractive index. 展开更多
关键词 of by with in YIG FIGURE
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Coupled Mode Characteristics From the Perturbation of 3D Printed Long-Period Fiber Grating Devices
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作者 Ravivudh KHUN-IN Yuji USUDA +2 位作者 Yuttapong JIRARAKSOPAKUN Apichai BHATRANAND hideki yokoi 《Photonic Sensors》 SCIE EI CSCD 2020年第3期195-203,共9页
Characteristics of electric field from a coupled mode inside an optical fiber under perturbation by three-dimensional(3D)printed long-period fiber grating(LPFG)device have been observed in this work by the experiment ... Characteristics of electric field from a coupled mode inside an optical fiber under perturbation by three-dimensional(3D)printed long-period fiber grating(LPFG)device have been observed in this work by the experiment and simulation.The various periodic index differences referring to the weights of perturbation by 3D printed LPFG device are applied on the single-mode fiber.The experimental results show that the resonant wavelength shift is a linear function of the grating period with the maximum coefficient of determination R2 of 0.9995.Some of resonant wavelengths are chosen to run simulations to investigate the electric field distribution.The scattering direction of the electric field states the magnitude of leaking optical power when the light transmits through the grating region applied to the single-mode fiber.Both the experimental and simulation results demonstrate that our proposed scheme can usefully be applied to selective tunable filters,intruder sensors,etc. 展开更多
关键词 3D printed long-period fiber grating device PERTURBATION resonant wavelength electric field distribution
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