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1.3-/spl mu/m strained MQW-DFB lasers with extremely low intermodulation distortion for high-speed analog transmission

机译:具有极低互调失真的1.3- / spl mu / m应变MQW-DFB激光器,用于高速模拟传输

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摘要

The intermodulation distortion and the noise characteristics of 1.3-/spl mu/m strained multiquantum-well distributed feedback (MQW-DFB) lasers have been investigated under the modulation frequency of 1.9 GHz in connection with the device structure. In this study, a strained MQW with strain-compensated layers has been introduced in order to increase in the quantum-well number and well width. This causes increase in the differential gain, resulting in increase of the resonance frequency (FR). The FR as high as 5.1 GHz/mW/sup 1/2/ has been obtained which is in good agreement with the theoretical calculation. In addition to the strained MQW structure, a new buried heterostructure entirely grown by MOCVD, named as FSBH (facet selective growth buried heterostructure), has been developed to minimize the leakage current which degrades L-I characteristics at high bias current causing the high distortion. The third-order-intermodulation distortion (IMD3) of -88 dBc and relative intensity noise (RIN) of -152 dB/Hz have been obtained under a two-tone test at 1.9 GHz. This suggests that this newly developed laser is quite suitable for high-speed-subcarrier multiplexing transmission.
机译:结合器件结构,研究了在1.9 GHz调制频率下1.3- / splμm/ m应变多量子阱分布式反馈(MQW-DFB)激光器的互调失真和噪声特性。在这项研究中,引入了具有应变补偿层的应变MQW,以增加量子阱数和阱宽度。这导致差分增益的增加,导致谐振频率(FR)的增加。已经获得了高达5.1 GHz / mW / sup 1/2 /的FR,这与理论计算非常吻合。除了应变的MQW结构之外,还开发了一种完全由MOCVD生长的新的掩埋异质结构,称为FSBH(刻面选择性生长掩埋异质结构),以最大程度地减小泄漏电流,该泄漏电流会在高偏置电流下降低L-I特性,从而导致高失真。在1.9 GHz的双音测试下,获得了-88 dBc的三阶互调失真(IMD3)和-152 dB / Hz的相对强度噪声(RIN)。这表明这种新开发的激光器非常适合于高速子载波多路传输。

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