Marconi Jorge D, Abbade Marcelo L F, Serpa-Imbett Claudia M, Fagotto Eric A M
Opt Express. 2017 Feb 20;25(4):4268-4283. doi: 10.1364/OE.25.004268.
The capacity of communication networks may be significantly improved by simply enhancing the optical amplifier bandwidth. This paper presents a numerical investigation of an ultra-broadband, low-ripple, two-pump-optical parametric amplifier (2P-OPA) that employs a tellurite glass buried-channel type nano-waveguide as nonlinear medium. The nano-waveguide was designed as a 25-cm-long Archimedean spiral that occupies a footprint of only ~2.5 mm, with a ~0.7 μm effective cross section. Its zero-dispersion wavelength is ~1550 nm, the nonlinear coefficient is ~3000 W km and the attenuation coefficient is ~0.5 dB/m (1100 to 1900 nm). Simulations suggest a 2P-OPA based on such waveguide will be able to amplify 243 QPSK input channels modulated at 56 Gbps over 102 nm bandwidth, over metropolitan area network scales.
通过简单地提高光放大器带宽,通信网络的容量可以得到显著提升。本文对一种超宽带、低纹波、双泵浦光参量放大器(2P-OPA)进行了数值研究,该放大器采用碲酸盐玻璃掩埋通道型纳米波导作为非线性介质。纳米波导被设计成一个25厘米长的阿基米德螺旋线,占地面积仅约2.5毫米,有效横截面积约为0.7平方微米。其零色散波长约为1550纳米,非线性系数约为3000W·km⁻¹,衰减系数约为0.5dB/m(1100至1900纳米)。模拟结果表明,基于这种波导的2P-OPA能够在城域网规模上,在102纳米带宽内放大243个调制速率为56Gbps的QPSK输入通道。