Observation of symmetrical reflection sidebands in a silica suspended-core fiber Bragg grating
M. L. V. Tse, Kit Man Chung, Liang Dong, Brian K. Thomas, Libin Fu, Kei Chun Cheng, Chao Lü, Hwa‐Yaw Tam
Abstract
M. L. V. Tse, Kit Man Chung, Liang Dong, Brian K. Thomas, Libin Fu, Kei Chun Cheng, Chao Lü, Hwa‐Yaw Tam
Abstract
We have observed symmetrical sidebands in reflection from Bragg grating written in a silica suspended-core fiber, which are caused by longitudinal periodic refractive index modulation in the Ge-doped suspended-core fiber with a core diameter of approximately 1.3 microm. Our simulation shows that the effective refractive index of the guided mode varied by 0.023% along the fiber with a period of approximately 650 microm. The periodic index variation can lead to amplitude modulation of fiber Bragg gratings, which can be studied by observing the spectra of a fiber Bragg grating written in the Ge-doped core. In addition, we have also characterized the temperature and strain responses of the fiber Bragg gratings, and showed that both responses in the suspended-core fiber are 20 to 25% lower than that of a fiber Bragg grating written on a conventional fiber.
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We have observed symmetrical sidebands in reflection from Bragg grating written in a silica suspended-core fiber, which are caused by longitudinal periodic refractive index modulation in the Ge-doped suspended-core fiber with a core diameter of approximately 1.3 microm. Our simulation shows that the effective refractive index of the guided mode varied by 0.023% along the fiber with a period of approximately 650 microm. The periodic index variation can lead to amplitude modulation of fiber Bragg gratings, which can be studied by observing the spectra of a fiber Bragg grating written in the Ge-doped core. In addition, we have also characterized the temperature and strain responses of the fiber Bragg gratings, and showed that both responses in the suspended-core fiber are 20 to 25% lower than that of a fiber Bragg grating written on a conventional fiber.
Key concepts: Fiber Bragg grating, Optics, Materials science, PHOSFOS, Core (optical fiber), Long-period fiber grating, Graded-index fiber, Photonic-crystal fiber