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作者:北戏开乙 来源:原创 发布日期:08-23

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可重构光学算术逻辑单元芯片研制成功_我的网站

胡雪岩

A |       记者24日从兰州大学获悉,该校物理科学与技术学院田永辉教授团队在光学数字计算领域取得重要进展。该团队研制出一种可重构光学算术逻辑单元芯片,将多种逻辑与算术运算集成于同一硬件平台。

B |     

Chinese research icebreaker Xuelong 2 arrives at the domestic base dock of China's polar expeditions in Waigaoqiao, Shanghai, on May 18, 2026. The vessel successfully completed all tasks of China's 42nd Antarctic expedition mission before returning to Shanghai. Photo: VCG
    Chinese research icebreaker Xuelong 2 arrives at the domestic base dock of China's polar expeditions in Waigaoqiao, Shanghai, on May 18, 2026. The vessel successfully completed all tasks of China's 42nd Antarctic expedition mission before returning to Shanghai. Photo: VCGChina's research icebreaker Xuelong 2 began its first ice station survey of its current voyage near 84 degrees north latitude in the central Arctic Ocean on Sunday, marking the start of an approximately half-month comprehensive survey of the region.
After completing the first stage of comprehensive ocean station surveys on Friday, Xuelong 2 sailed toward higher latitudes and selected a large, relatively flat piece of sea ice about 1.5 meters thick in a densely packed ice zone for its first ice station.
According to Lin Long, captain of the Xuelong 2 sea ice team, the ice station survey conducted by the vessel during this voyage will include six short-term ice stations and one long-term ice station, the Xinhua News Agency reported Sunday.
More than 20 types of scientific operations will be carried out, including the deployment of expendable ice-based buoys, snow and ice-core sampling, under-ice water sampling, sea-ice remote sensing, atmospheric profiling and under-ice oceanographic observations.
Lan Musheng, assistant to the chief scientist of the expedition, said the researchers will comprehensively monitor changes in parameters related to the atmosphere, sea ice, upper ocean and ecological processes beneath the ice as the sea ice melts.
The observations will provide scientific data for studying the rapid changes in Arctic sea ice, the mechanisms behind those changes and the evolution of Arctic ecosystems.
The ice station work is part of China's 16th Arctic Ocean scientific expedition, which was organized by the Ministry of Natural Resources. The expedition set sail from Dalian, Northeast China's Liaoning Province on July 3.
The mission is being carried out by four vessels - Xuelong, Xuelong 2, Jidi and Tansuo-3 - and is expected to be completed in early October. 
The expedition is focusing on comprehensive surveys of sea ice, hydrology, biology, ecology and the atmospheric environment in key areas of the Arctic Ocean.
The two icebreakers Xuelong and Xuelong 2 will work together on the ice station surveys. Xuelong completed surveys at 12 ice stations on Friday.
Lin said the ice station locations planned for Xuelong 2 will work in coordination with those of Xuelong to form an observation array. 
The arrangement will allow researchers to more deeply investigate the interactions among the atmosphere, sea ice and ocean in the central Arctic Ocean amid rapid environmental changes, as well as their coupling effects with the ecosystem.
The expedition is being conducted against a backdrop of rapid changes in the Arctic environment. 
When the mission was launched in July, expedition leader Wang Jinhui said that global warming was driving rapid and profound changes in the Arctic natural environment, with trends such as sea-ice melting intensifying.
The expedition is therefore designed not only to monitor environmental changes but also to investigate frontier scientific questions, including the dynamic evolution of the oceanic crust. 
Working on sea ice also presents significant safety challenges. Low temperatures and complex ice-surface conditions can pose risks to researchers, while polar bears are considered the biggest safety risk during ice station operations.
The expedition team has therefore formulated specific bear-prevention and emergency response plans and equipped personnel with various types of bear-deterrence equipment and emergency supplies to ensure their safety.

C | 相关成果发表于国际权威期刊《自然·通讯》。  随着人工智能与数据密集型应用对高速、低时延计算需求的激增,传统电子集成电路正面临摩尔定律放缓、互连带宽受限和功耗持续上升等挑战。集成光子技术凭借大带宽、高速并行处理和低传输时延等优势,为突破电子计算瓶颈提供了重要的技术路径。  基于这一背景,研究团队依托成熟的硅光子集成平台,利用微环调制器体积小、调制速度快、功耗低且易于电控重构的特点,研制出可实现多种逻辑与算术功能动态切换的光学数字计算芯片。团队通过级联微环构建基本逻辑单元,实现了NOT、AND、OR、XOR和XNOR等多种逻辑运算;同时引入波长维度并行处理不同二进制位,使同一硬件架构能够动态切换为2比特加法器、减法器和数值比较器,无需重新设计芯片结构。  芯片基于220纳米硅绝缘体平台制备,每个微环集成载流子耗尽型高速电光调制结构和热调谐单元,可分别完成高速数据加载与工作波长校准。实验结果表明,该系统在20Gbit/s速率下实现了基本逻辑运算及算术功能,计算密度达到528Gbit/s2,能效达12.36fJ/bit。  在此基础上,团队完成了高速数据加密与解密、医学图像水印嵌入和图像差异增强等应用验证,展示了该架构从基础逻辑器件向多功能光学数字计算系统扩展的能力。  田永辉表示,该工作为构建高密度、低功耗、可重构的光子算术逻辑处理芯片提供了新的实现路径,也为光学数字计算在高速信息处理和片上智能计算中的应用奠定了器件基础。

D | (记者颉满斌 通讯员余若怡)。

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