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航天软件:目前对于太空算力和量子计算领域暂没有涉及
Core Insights - The company has established three main business segments: autonomous software products, information technology services, and information system integration, primarily targeting aerospace and government sectors [1] Group 1: Business Segments - The company’s autonomous software products include basic software and industrial software [1] - Information technology services offered by the company encompass audit information services, commercial secret network cloud services, and information operation and maintenance services [1] - The information system integration services are mainly focused on the aerospace and government sectors [1] Group 2: Current Focus - The company currently does not have involvement in the fields of space computing and quantum computing [1]
航天软件(688562.SH):目前对于太空算力和量子计算领域暂没有涉及
Ge Long Hui· 2026-01-22 08:18
Core Viewpoint - The company has established three main business segments based on its Shentong database and product collaborative research platform, focusing on software products, IT services, and information system integration, primarily targeting the aerospace and government sectors [1] Group 1: Business Segments - The company offers autonomous software products, including basic software and industrial software [1] - IT services provided by the company include audit information services, commercial secret network cloud services, and IT operation and maintenance services [1] - The information system integration services are mainly directed towards the aerospace and government sectors [1] Group 2: Current Focus - Currently, the company does not have involvement in the fields of space computing and quantum computing [1]
环球问策:全同态加密研究论文占比超三分之一,中国团队如何摘取数据安全“圣杯”?
Huan Qiu Wang Zi Xun· 2026-01-22 06:03
Core Insights - Ant Group's research team has made significant advancements in fully homomorphic encryption (FHE), publishing six top-tier conference papers in 2025, representing over one-third of the total 17 papers in the field during that period [1][3] - FHE allows computations on encrypted data without decryption, providing a high level of security for sensitive data, which is increasingly important as quantum computing poses threats to traditional encryption methods [3][5] - The team has achieved over 3000 times performance improvement in FHE acceleration through a shift in technical approach, focusing on software optimization rather than relying solely on custom hardware [5][6] Research Achievements - The Ant Group's research team has established itself at the forefront of FHE research, with a notable increase in published papers, indicating a significant milestone in their academic contributions [1][3] - The KLSS algorithm, introduced in 2023, optimizes the key exchange operation in FHE, which is crucial for performance but previously a bottleneck [7][8] - The team has successfully adapted the KLSS algorithm for GPU implementation, addressing bandwidth issues that arise from parallelization, thus enabling practical applications [8][9] Technical Developments - The transition to a software optimization approach has led to a new paradigm in FHE research, allowing for better hardware utilization without the need for expensive custom circuits [5][6] - The research team has identified and addressed the mismatch between cryptographic algorithms and modern GPU capabilities, leading to significant performance gains [6][9] - The global landscape of FHE research shows diverse approaches, with the Ant Group's strategy focusing on a comprehensive optimization path that integrates software, hardware, and system-level improvements [9][10] Industry Implications - FHE is positioned as a critical technology for secure data processing in sensitive sectors such as finance and healthcare, where privacy is paramount [11][12] - The anticipated expansion of FHE applications is expected to address the "last mile" trust issues in large model deployments, enhancing data security in cloud services [12][13] - As the technology matures and costs decrease, FHE is projected to become more widely adopted, with the potential for significant market impact in data privacy solutions [13][14]
量旋科技完成数亿元C轮融资
Xin Lang Cai Jing· 2026-01-22 04:21
Core Insights - Liangxuan Technology announced the completion of several hundred million yuan in Series C financing on January 22, with investments from Longli Technology, Jingkai Capital, Hengtai Huasheng, Yida Capital, Qingdao Hanrui, and Hainan Fengkaixiang [1][2] - The company aims to accelerate core technology iteration, expand production capacity, and pursue global layout to promote the large-scale application of quantum computing [1][2] Company Overview - Founded in 2018, Liangxuan Technology is a one-stop solution provider dedicated to the industrialization and popularization of quantum computing [1][2] - The company operates under a dual-driven strategy of technological research and commercial implementation, leveraging educational-level nuclear magnetic quantum computers, industrial-level superconducting quantum computers, quantum computing cloud platforms, and application software for industry layout [1][2] Industry Impact - Liangxuan Technology empowers various cutting-edge fields such as scientific research and education, drug development, financial technology, and artificial intelligence [1][2] - The company collaborates with partners to build scenario-based solutions, integrating quantum computing into diverse industries and transforming it into a true productivity tool [1][2]
清华75后,融资数亿
3 6 Ke· 2026-01-22 01:25
Core Insights - The quantum computing sector has seen significant investment, with Liangxuan Technology recently securing hundreds of millions in Series C funding, bringing its total funding to several hundred million since its inception in 2018 [2][3] Company Overview - Liangxuan Technology, founded in 2018 and headquartered in Shenzhen, has completed six rounds of financing, accumulating several hundred million in total [2] - The company has developed the world's first programmable desktop quantum computer, which has been sold to over 40 countries, and has also produced superconducting quantum chips and measurement control systems for export [2][3] Industry Challenges and Solutions - The traditional quantum computers are heavy (weighing around one ton) and expensive (costing several million dollars), making them inaccessible for most universities and research institutions [3] - Liangxuan Technology addresses this by offering a desktop quantum computer that, while not the most powerful, meets educational needs and is more affordable, priced at 400,000 yuan (approximately $60,000) [15] Market Transition and Future Outlook - The industry is transitioning from educational and research applications to industrial applications, with significant advancements expected by 2028 in fields like drug screening and new material design [5][21] - The quantum computing market is projected to exceed $1 billion in revenue by 2025, with potential growth to between $28 billion and $72 billion by 2035 [21][22] Product Development and Innovation - Liangxuan Technology's first product, the "Gemini" quantum computer, was introduced in 2020, weighing 90 kg and designed for educational use [15] - The company has also developed superconducting quantum chips, with the first exports occurring in November 2023, marking a significant milestone for Chinese companies in the global market [16] Investment and Growth Trajectory - The investment landscape for quantum computing has accelerated, with $700 million and $1.4 billion invested in 2020 and 2021, respectively, surpassing the total investment of the previous decade [19] - Liangxuan Technology has maintained a financing rhythm of approximately one round every 18 months, with a significant increase in orders, particularly for its superconducting products, which are expected to dominate sales by 2024 [21]
量子计算的瓶颈:处理器再快,也必须等待数据
Guan Cha Zhe Wang· 2026-01-22 00:46
【文/观察者网专栏作者 徐令予】 关于量子计算的争论,大多在量子比特的数字游戏与工程实现的泥潭中打转。公众叙事中默认了一个近 乎迷信的前提:只要处理器足够快,算力便会如期而至。然而,这个在计算技术发展史中早已被证伪的 命题,正借着量子的外壳重新还魂。 现代计算的战场,不在于运算本身,而在于数据的"搬运"与"等待"。 过去数十年取得的算力红利,其 实主要来自数据调度与存储架构的持续演进。英伟达的黄仁勋在2026年CES展会上强调指出:当前AI算 力的瓶颈已从传统的算术计算单元扩展到内存带宽、数据移动效率及系统级延迟,这源于AI模型规模 的指数级增长和物理AI对实时性的严苛要求。 本文并非试图否定量子计算的研究价值,而是希望从计算体系结构与算力本体的角度,重新审视量子计 算的技术承诺。文章将首先澄清"算力并不等同于处理器速度"这一常被忽视的基本事实,继而讨论量子 计算在存储与数据调度层面所面临的结构性约束,从而为当前量子计算的争议提供一个新的视角。 一、算力不只是处理器速度,内存往往才是决定因素。 在关于计算能力的讨论中,长期存在一个误区:算力等同于中央处理器(CPU)的运算速度。这种理 解或许符合人们对"计算" ...
清华哈佛背景团队做量子计算机,营收翻倍增长,拿下数亿融资丨36氪首发
3 6 Ke· 2026-01-22 00:04
作者丨欧雪 编辑丨袁斯来 硬氪获悉,量子计算企业深圳量旋科技有限公司(以下简称「量旋科技」)近日完成数亿元C轮融资。我们总结了本轮融资信息和该公司几大亮点: 融资金额及领投机构 融资金额:数亿元 融资轮次:C轮 投资机构:隆利科技、毅达资本、晶凯资本、恒泰华盛等财务机构 资金用途:主要用于超导量子计算机全栈技术研发,涵盖芯片新工艺、量子纠错、测控系统及整机集成等关键方向 公司基本信息 成立时间:2018年 公司总部:深圳 核心产品:产业级超导量子计算机"大熊座"系列;教育级核磁量子计算机"双子座""三角座"系列;量子软件与云平台(SpinQit编程框架、量旋云)。 技术亮点:具备全栈自主研发与芯片量产能力;专注量子纠错技术,构建"硬件—算法—控制"协同体系;自建超导芯片产线,年产能可达数千片。 量旋科技已形成以超导业务为主导的业务结构,超导与核磁业务营收占比约为6:4,且新增订单中超导占比持续提升。2025年,公司订单及营收同比增长均 超130%,此前已成功实现中国首枚超导芯片出口及首台超导整机海外交付,多台"大熊座"整机也在持续交付中。 团队背景 量旋科技的核心团队具备国际化科研与工程化背景,成员多来自麻省 ...
新闻发布厅丨从全年报感受河南经济质感和温度
He Nan Ri Bao· 2026-01-21 23:37
Core Viewpoint - The economic performance of Henan in 2025 demonstrates strong resilience and vitality, achieving a stable and improving trend amidst complex international conditions and economic challenges [1][2]. Economic Growth - The GDP of Henan reached 6.66 trillion yuan, with a year-on-year growth of 5.6%, surpassing the average growth rate of 1.2 percentage points from 2021 to 2024 [2]. - Key economic indicators showed growth rates above the national average throughout the year, indicating both qualitative and quantitative improvements [2]. Consumption and Retail - The total retail sales of consumer goods in Henan amounted to 2.9 trillion yuan, with a year-on-year increase of 5.6%, exceeding the national average by 1.9 percentage points [3]. - Emerging consumption trends, such as emotional and experiential consumption, have significantly boosted related industries like dining and tourism, with the film production industry seeing a revenue increase of 115.2% [3]. Industrial Development - Traditional industries are undergoing rapid transformation, while strategic emerging industries are optimizing, with high-tech manufacturing and strategic emerging industries growing by 16.6% and 13% respectively [4]. - The contribution rate of the "7+28+N" industrial chain to industrial growth reached 70.4%, with significant growth in sectors like optoelectronics and aerospace [4]. Policy Support - The economic performance is supported by macroeconomic policies aimed at integrating national development with local growth, enhancing connectivity and infrastructure [5]. - The contribution rate of Henan's foreign trade to the national total increased from 0.5% in 2024 to 7% in 2025, reflecting an expanding international trade network [6]. Future Outlook - The logistics industry index in December 2025 was 52.2, indicating a positive trend, while consumer prices rose by 1.1% year-on-year [7]. - The government plans to implement more proactive fiscal policies in 2026, focusing on enhancing public welfare and supporting investment in human capital [8].
上交会“国际展区”签约:一场技术贸易盛会背后的硬核突围
Di Yi Cai Jing· 2026-01-21 13:55
"十四五"以来,上海市技术进出口合同金额年均增长8.6%,持续位于全国前列。 在AI加速渗透与变革的时代,技术贸易已成为衡量贸易强国水平的关键标志。 2026年1月21日,在上海东方枢纽国际商务合作区,第十二届中国(上海)国际技术进出口交易会(下称"上交会")的序幕提前拉开。大屏幕前一张张电子 签约席上,来自爱尔兰、德国、瑞士、波兰等地的14家国际机构代表与上海技术进出口促进中心负责人共同完成了一份份协议。 这场签约不仅意味着超2600平方米的国际展区落地,更标志着一个全球前沿技术进入中国市场的"首秀场"正式搭建。 这并非正式展会,而是一场精心策划的"国际展区"签约暨技术贸易公共服务产品发布活动。活动吸引了200多名来自驻沪领馆、境外贸易促进机构、商协会 及企业代表参与。 上海市商务委副主任周岚在现场致辞中表示,上海承担着建设国际科技创新中心的历史使命,作为我国最大的经济中心城市,正在积极培育高能级贸易主 体、加强创新制度供给、促进技术贸易与产业协同发展,展现出蓬勃的发展活力。面向"十五五"发展新阶段,第十二届上交会各项筹备工作正稳步推进,将 呈现国际化合作空间进一步拓展、展区设置聚焦高质量发展新赛道、技术贸 ...
国盾量子唐世彪:AI与量子计算将开始深度融合
Core Viewpoint - GuoDun Quantum (国盾量子) has established itself as a pioneer in the quantum technology sector, being the first company globally to go public with a core focus on quantum technology, marking a significant milestone in the capital market [1] Group 1: Company Background and Development - GuoDun Quantum was founded during a challenging period for quantum technology, facing significant funding difficulties and skepticism from social capital before 2014 [2][3] - The company received crucial support from local governments, particularly in Hefei and Jinan, which facilitated its early development and establishment of quantum communication networks [2] - The year 2017 marked a turning point for GuoDun Quantum, shifting its focus from pure research to market application, particularly with the launch of the Beijing-Shanghai high-speed railway project [3] Group 2: Technology and Applications - Quantum communication technology, exemplified by "quantum secret talk," has begun to see basic application and public acceptance, despite its complex nature [4][5] - The security of quantum communication is based on physical principles rather than mathematical complexity, making it inherently secure against future computational advancements [4][5] - GuoDun Quantum has partnered with China Telecom to promote quantum communication products, achieving over 6 million users for its "quantum secret talk" service [5] Group 3: Future Prospects and Integration - GuoDun Quantum aims to deepen integration with China Telecom's cloud services and AI research, enhancing its infrastructure capabilities [6] - The company is positioned at the forefront of quantum computing development, participating in significant projects like the "Zu Chongzhi" quantum computer, which has achieved quantum superiority [7] - Future efforts will focus on advancing quantum chip technology and promoting quantum computing cloud platforms to broaden access and application [7][8] Group 4: Quantum Computing and AI Synergy - There is a natural synergy between quantum computing and AI, with AI enhancing quantum technology research and quantum computing addressing AI's computational limitations [9][10] - The national "14th Five-Year Plan" emphasizes the strategic importance of quantum technology, aiming to position it as a key driver of economic growth [10][11] - The integration of various technologies, including quantum and AI, is essential for addressing industry challenges and fostering new economic opportunities [11]