量子计算光子集成芯片解决方案中的控制和传感接口分析

Luca Gemma, M. Bernard, M. Ghulinyan, D. Brunelli
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引用次数: 5

摘要

科学界对量子计算的兴趣正在迅速增长,因为这种技术可能是实现机器学习和大数据算法密集使用的关键。量子计算机可以从基本的光子元件(如马赫-曾德干涉仪(MZI))中构想出来,但它们仍然需要传统VLSI技术中的控制机制和传感元件。在这项研究中,我们提出了一项正在进行的关于这些基本光子电路的潜在结构的研究。我们实现了两个光子集成电路(PIC)测试结构,其中金属热敏电阻作为移相器,硅光电二极管作为输出检测器。我们提出了一个完整的表征相移器元件有效的片上PIC相互作用。为了使相移保持光的相干性,我们通过闭环控制作用于相移器。通过脉宽调制控制移相器,我们在PIC中精确地驱动光子的路径,证明了所提出的配置对于光子芯片管理的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of control and sensing interfaces in a photonic integrated chip solution for quantum computing
Interest in quantum computing is rapidly growing in the scientific community as such technology could be the key to enable intensive use of machine learning and big data algorithms. Quantum computers can be conceived from basic photonic elements, such as Mach-Zehnder interferometers (MZI), but they still need control mechanisms and sensing elements from traditional VLSI technology. In this study, we present an ongoing study on a potential architecture for these basic photonic circuits. We realized two Photonic Integrated Circuit (PIC) test structures embedding metallic thermistors as phase shifters and silicon photodiodes as output detectors. We present a complete characterization of the phase shifter elements for an effective on-chip PIC interaction. To induce a consistent phase shift still retaining coherence of light, we act on the phase-shifters by means of a closed-loop control. By controlling through Pulse-Width Modulation the phase shifters, we drive the path of photons accurately in the PIC, demonstrating the effectiveness of the proposed configuration for the management of a photonic chip.
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