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Electronic band-gap modified passive silicon optical modulator at telecommunications wavelengths

机译:电信波长的电子带隙修饰无源硅光学调制器

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The silicon optical modulator is considered to be the workhorse of a revolution in communications. In recent years, the capabilities of externally driven active silicon optical modulators have dramatically improved. Self-driven passive modulators, especially passive silicon modulators, possess advantages in compactness, integration, low-cost, etc. Constrained by a large indirect band-gap and sensitivity-related loss, the passive silicon optical modulator is scarce and has been not advancing, especially at telecommunications wavelengths. Here, a passive silicon optical modulator is fabricated by introducing an impurity band in the electronic band-gap, and its nonlinear optics and applications in the telecommunications-wavelength lasers are investigated. The saturable absorption properties at the wavelength of 1.55?μm was measured and indicates that the sample is quite sensitive to light intensity and has negligible absorption loss. With a passive silicon modulator, pulsed lasers were constructed at wavelengths at 1.34 and 1.42?μm. It is concluded that the sensitive self-driven passive silicon optical modulator is a viable candidate for photonics applications out to 2.5?μm.
机译:硅光调制器被认为是通信革命的主力军。近年来,外部驱动的有源硅光调制器的功能已大大提高。自驱动无源调制器,尤其是无源硅调制器,在紧凑性,集成度,低成本等方面具有优势。无源硅光调制器受较大的间接带隙和与灵敏度相关的损耗的限制,因此稀缺且没有得到发展。 ,尤其是在电信波长下。在此,通过在电子带隙中引入杂质带来制造无源硅光学调制器,并研究其非线性光学特性及其在电信波长激光器中的应用。测量了在1.55μm波长处的饱和吸收特性,表明该样品对光强度非常敏感并且吸收损失可忽略不计。使用无源硅调制器,可以在1.34和1.42?μm的波长下构建脉冲激光器。结论是,灵敏的自驱动无源硅光学调制器对于2.5μm的光子学应用是可行的。

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