论文标题

方法学对噪声对纳米射击器大信号调制的影响的影响

Methodological investigation into the noise influence on nanolasers' large signal modulation

论文作者

Wang, T., Zou, J. L., Puccioni, G. P., Zhao, W. S., Lin, X., Chen, H. S., Wang, G. F., Lippi, G. L.

论文摘要

由于其极大减少的足迹,低热载荷和潜在的出色调制带宽,在芯片级别的通信和数据处理中被认为是理想的候选者,在某些情况下,这些调制带宽估计超过了数百个GHz。然而,迄今为止,迄今为止报道的少数实验实现却非常缺乏这样的预测,无论是由于技术困难还是过度令人振奋的数值结果。我们提出了一种研究物理特征的方法,该方法使用大信号调制的数值模拟来确定系统的鲁棒性并将其应用于通用模型。改变直流泵值和调制频率,我们进一步研究了内在噪声的影响,此外,考虑到腔损失的作用。我们的结果证实,可以以较大的泵值为代价来实现明显的调制带宽,而通常针对的低偏置操作是强烈的噪声和带宽限制的。这项基本调查表明,应将技术努力定向促进纳米震剂的大型泵率,其性能有望在相同的光子通量和输入能量范围内超越微发频。

Nanolasers are considered ideal candidates for communications and data processing at chip-level thanks to their extremely reduced footprint, low thermal load and potentially outstanding modulation bandwidth, which in some case has been numerically estimated to exceed hundreds of GHz. The few experimental implementations reported to date, however, have so-far fallen very short of such predictions, whether because of technical difficulties or of overoptimistic numerical results. We propose a methodology to study the physical characteristics which determine the system's robustness and apply it to a general model, using numerical simulations of large-signal modulation. Changing the DC pump values and modulation frequencies, we further investigate the influence of intrinsic noise, considering, in addition, the role of cavity losses. Our results confirm that significant modulation bandwidths can be achieved, at the expense of large pump values, while the often targeted low bias operation is strongly noise- and bandwidth-limited. This fundamental investigation suggests that technological efforts should be oriented towards enabling large pump rates in nanolasers, whose performance promises to surpass microdevices in the same range of photon flux and input energy.

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