Noh Young-Ouk, Lee Hyung-Jong, Ju Jung Jin, Kim Min-su, Oh Su Hwan, Oh Min-Cheol
ChemOptics Inc, Yusong-gu, Daejeon, Republic of Korea.
Opt Express. 2008 Oct 27;16(22):18194-201. doi: 10.1364/oe.16.018194.
Based on the thermo-optic tuning of a polymer waveguide Bragg reflector, we demonstrated a cost-effective tunable wavelength laser for WDM optical communications. The excellent thermo-optic effect of the polymer waveguide enabled direct tuning of the Bragg reflection wavelength by controlling the electrical power on a micro-heater. Wavelength tuning for 32 channels with 0.8 nm wavelength spacing was demonstrated as well as a continuous tuning with wavelength steps of 0.1 nm. To be qualified as a tunable laser for WDM-PON applications, wavelength stability within 0.15 nm was confirmed for an operating temperature range from -10 to 70 degrees C.
基于聚合物波导布拉格反射器的热光调谐,我们展示了一种用于波分复用(WDM)光通信的经济高效的可调谐波长激光器。聚合物波导出色的热光效应使得通过控制微加热器上的电功率能够直接调谐布拉格反射波长。展示了32个通道的波长调谐,波长间隔为0.8 nm,以及波长步长为0.1 nm的连续调谐。为了符合用于波分复用无源光网络(WDM-PON)应用的可调谐激光器的要求,在-10至70摄氏度的工作温度范围内,确认了波长稳定性在0.15 nm以内。