论文标题
在三种不同几何的藻类波导中可调的四波混合
Tunable Four-Wave Mixing in AlGaAs Waveguides of Three Different Geometries
论文作者
论文摘要
由于其出色的非线性光学特性,藻类材料平台已被强烈用于在芯片上开发非线性光子设备。我们提出了一种新的藻类波导几何形状,称为半核蚀刻,它代表了两个先前研究的几何形状之间的折衷,即纳米线和带状的波导,结合了其最佳品质。我们在电信C波段(大约1550 nm的波长)的所有三个几何形状中进行了可调的四波混合(FWM)实验,并带有脉冲泵束和连续波(CW)信号梁。在纳米线,脱衣舞和半核几何形状中达到的最大FWM峰值效率分别为-5 dB,-8 dB和-9 dB。这些值是藻类波导中报告的最高值之一。信噪比的转换范围也很引人注目:脱衣舞和半核波导的161 nm,纳米线的152 nm。根据我们的发现,我们得出的结论是,半核几何形状是纳米线几何形状的另一种方法,该几何形状早些时候被认为是最有效的几何形状,可以在半频隙上方的光谱区域执行波长转换。此外,我们表明,半核几何形状比纳米线几何形状显示出与多光子吸收相关的问题。
The AlGaAs material platform has been intensively used to develop nonlinear photonic devices on-a-chip, thanks to its superior nonlinear optical properties. We propose a new AlGaAs waveguide geometry, called half-core etched, which represents a compromise between two previously studied geometries, namely the nanowire and strip-loaded waveguides, combining their best qualities. We performed tunable four-wave mixing (FWM) experiments in all three of these geometries in the telecommunications C-band (wavelengths around 1550 nm), with a pulsed pump beam and a continuous-wave (CW) signal beam. The maximum FWM peak efficiencies achieved in the nanowire, strip-loaded and half-core geometries were about -5 dB, -8 dB and -9 dB, respectively. These values are among the highest reported in AlGaAs waveguides. The signal-to-idler conversion ranges were also remarkable: 161 nm for the strip-loaded and half-core waveguides and 152 nm for the nanowire. Based on our findings, we conclude that the half-core geometry is an alternative approach to the nanowire geometry, which has been earlier deemed the most efficient geometry, to perform wavelength conversion in the spectral region above the half-bandgap. Moreover, we show that the half-core geometry exhibits fewer issues associated with multiphoton absorption than the nanowire geometry.