Fabrication of a bistable distributed feedback laser amplifier with a completely linear chirped grating by electron beam lithography

T. Tajima, K. Hayashi, D. Maywar, W. Asawamethapant, Y. Nakano
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引用次数: 4

Abstract

The chirped grating is useful in distributed feedback (DFB) lasers as it removes threshold degeneracy, enhances wavelength tuning range, and reduces spatial hole burning. Moreover, it lowers the input power necessary for optical bistability in DFB laser amplifiers and enlarges the operation wavelength range as well. This optical bistability provides means of all optical flip-flop and wavelength conversion, and therefore is very important for optical networking. For the purpose of the optical bistability, the linearly chirped grating as illustrated is advantageous. However, making such gratings is difficult if the holographic exposure is used. Even with the electron beam exposure, patterning linear chirping is not straightforward as the grating pitch has to be changed typically by several ppm every grating line. One method of controlling the grating pitch beyond the maximum positioning resolution of electron beam writers is to incorporate the ability to change the field size. Gratings with slightly different pitches for WDM laser arrays have been successfully fabricated by this method. However, linearly chirped gratings require even finer controllability. We have therefore introduced the weighted exposure technique into the field size modulation, thus acquiring pitch controllability sufficient to write linear chirped gratings.
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电子束光刻技术制备全线性啁啾光栅双稳分布反馈激光放大器
啁啾光栅在分布式反馈(DFB)激光器中具有消除阈值简并、提高波长调谐范围和减少空间孔燃烧等优点。此外,它还降低了DFB激光放大器的光双稳性所需的输入功率,并扩大了工作波长范围。这种光双稳性提供了全光触发器和波长转换的手段,因此对光网络非常重要。为了实现光学双稳性,如图所示的线性啁啾光栅是有利的。然而,如果使用全息曝光,制作这样的光栅是困难的。即使在电子束照射下,图形化线性啁啾也不是直截了当的,因为光栅间距必须在每条光栅线上改变几个ppm。控制光栅间距超过电子束编写器最大定位分辨率的一种方法是结合改变场大小的能力。用这种方法已经成功地制作了不同间距的WDM激光阵列光栅。然而,线性啁啾光栅需要更精细的可控性。因此,我们将加权曝光技术引入到场尺寸调制中,从而获得足够的基音可控性来编写线性啁啾光栅。
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