- 资讯公开站ScienceDaily Matter & Energy
Physicists just saw quarks make waves in the Big Bang’s primordial soup
Physicists at CERN’s Large Hadron Collider have captured the clearest evidence yet that quark-gluon plasma, the scorching-hot matter that filled the newborn universe, behaves like a true liquid. By tracking individual qu…
- 资讯公开站ScienceDaily Matter & Energy
Scientists finally see how nature moves energy so efficiently
Researchers have captured key steps in a chemical reaction that helps nature transfer energy with remarkable efficiency. Ultrafast X-rays revealed how changes involving electrons and protons are closely linked to the rea…
- 资讯公开站Digitimes
Nittobo expands glass cloth output as AI chip demand strains global supply
Nittobo is expanding production of its T-Glass glass cloth as demand from AI chip makers tightens a critical part of the global semiconductor supply chain. The move matters beyond Japan because shortages of this insulati…
- 资讯公开站Digitimes
AM Intelligence expands India AI infrastructure push with 20,000 more Nvidia Rubin GPUs
AM Intelligence (AMI) is widening its AI infrastructure push in India and Malaysia, adding to a regional buildout that could matter well beyond Asia. The latest orders expand access to frontier computing for cloud provid…
- 资讯公开站ScienceDaily Matter & Energy
A new kind of magnetism could unlock faster, more efficient computers
Scientists have discovered evidence of altermagnetism in a thin, highly tunable material that could help electronics use electron spin instead of relying only on electrical charge. The unusual magnetic state may enable f…
- 资讯公开站Supply Chain Dive
Supply chain resilience starts before disruption: Why collaboration and visibility matter
- 资讯公开站Entrepreneur
Better Branding Will Make More Money Than Having the Best Marketing — Lessons Learned From Real Estate
As consumers become overwhelmed with options, building trust before the first sale will become the obvious choice when it matters most.
- 资讯公开站ScienceDaily Matter & Energy
Scientists find a surprising clue to why the universe’s expansion doesn’t add up
Tiny magnetic fields created shortly after the Big Bang may help explain the long-running disagreement over how fast the universe is expanding. Detailed simulations show that these primordial fields could have changed th…
- 资讯公开站ScienceDaily Matter & Energy
Scientists just found a new way to make hydrogen from water
A new light-activated material can efficiently produce hydrogen from water without requiring an additional expensive metal catalyst. Researchers say its unusual sulfur-based chemistry could point toward cheaper and more …
- 资讯公开站ScienceDaily Matter & Energy
Scientists just made a superconductor stronger using “empty space”
Researchers have demonstrated that quantum fluctuations in supposedly empty space can strengthen superconductivity, raising the transition temperature of an ultrathin material by as much as 5.4%. The discovery opens the …
- 资讯公开站ScienceDaily Matter & Energy
Scientists just pushed superconductors beyond their usual current limit
Ultrashort electrical pulses allowed scientists to push superconductors closer than ever to the point where their electron pairs actually break apart. The method revealed hidden differences between superconducting materi…
- 资讯公开站ScienceDaily Matter & Energy
Electrons slow to a crawl in a strange new quantum state
Scientists at the University of Chicago have uncovered a surprising quantum state in the layered magnetic material Fe5GeTe2, where huge numbers of electrons move together unusually slowly while remaining quantum coherent…
- 资讯公开站rss_arxiv_cs_ai
Conflicting Supervision Moves Commitment, Not Capability: A 12.29{\sigma} arrangement effect that is exactly zero under a convention-agnostic score
arXiv:2610.00234v1 Announce Type: new Abstract: "Train a model on the same problems written under two incompatible conventions, both correct, and ask what the ordering of that data writes into the parameters. The learni…
- 资讯公开站Digitimes
OpenAI fires 3 safety researchers for sharing confidential information
OpenAI fired three safety researchers after they shared confidential information with a third-party artificial intelligence safety group, according to The Wall Street Journal, which first reported the news. The case has …
- 资讯公开站ScienceDaily Matter & Energy
Caltech physicists finally measure a quantum energy ladder predicted 40 years ago
Researchers have experimentally observed energy patterns that physicists have predicted for about 40 years. By arranging laser-trapped atoms into a quantum simulator, they recreated two different quantum tipping points a…
- 资讯公开站ScienceDaily Matter & Energy
量子隐形传态突破:科学家破解25年纠缠难题
Quantum teleportation breakthrough: Scientists crack a 25-year entanglement challenge
科学家开发并实验演示了一种长期寻求的方法,用于识别W态——一种重要的多光子量子纠缠形式。该技术可使复杂纠缠系统更易测量,为量子隐形传态开辟新可能。
- 资讯公开站Energy Storage News
可用率:为何这一储能性能指标如此重要及如何计算
Availability: Why this BESS performance metric matters so much, and how to calculate it
Liam Critchley在ESN Premium中深入探讨可用率——电池储能性能中最受关注的指标之一。
- 资讯公开站Digitimes
中国电动车技术将逐步挑战美国市场壁垒
Chinese EV tech is set to challenge US market barriers over time
特朗普与习近平的华盛顿峰会未达成允许中国车企在美造车的预期协议,美国本土车企暂时松一口气,但分析师认为中国汽车进入美国市场只是时间问题。
- 资讯公开站ScienceDaily Matter & Energy
行李箱大小的航天器或能聆听恒星诞生前的宇宙
This suitcase-sized spacecraft could hear the universe before stars existed
CosmoCube将利用月球背面屏蔽地球无线电噪声,搜寻首批恒星出现前宇宙的微弱信号,有望揭示宇宙黑暗时代如何终结以及暗物质如何促成首批星系形成。
- 资讯公开站rss_gf_news
基于9SW平台的SLATE™先进封装技术,解锁更小、更智能的射频前端
Unlocking smaller, smarter RF front-ends with SLATE™ advanced packaging technology on 9SW
- 资讯公开站ScienceDaily Matter & Energy
量子计算机模拟物质“凭空出现”
Quantum computer simulates matter “popping into existence”
摘要显示,科学家利用 13 离子量子模拟器重建了与早期宇宙极端物理相关的粒子形成过程。该突破表明,量子计算机未来或可帮助研究人员探究大爆炸后物质如何形成与演化。
意义:展示量子模拟器可用于研究高能物理与宇宙学难题,为量子计算在基础科学中的应用提供新方向。
- 资讯公开站ScienceDaily Matter & Energy
CERN开始拆解大型强子对撞机
CERN has begun disconnecting the Large Hadron Collider
摘要显示,CERN已开始更换大型强子对撞机部分关键磁体,作为高亮度升级的一部分。新型超导磁体产生的磁场强度约提升40%,可在碰撞前将粒子束压缩得更紧,从而产生更多碰撞供ATLAS和CMS实验分析。CERN称这将为物理学家提供更大的窗口,以研究宇宙的基本运作机制。
意义:高亮度升级将大幅提升对撞数据量,推动粒子物理发现,也意味着大规模数据处理与计算基础设施需求持续增长。
- 资讯公开站ScienceDaily Matter & Energy
量子计算的“黑马”刚刚证明可实现通用计算
Quantum computing’s “dark horse” just proved it can go universal
摘要显示,研究人员利用 Quantinuum 的 H2 处理器上的 54 个量子比特,证明被称为非阿贝尔任意子的奇异量子粒子可执行通用量子计算所需的全部操作。他们结合编织(braiding)与融合(fusion)两种机制,实现了仅靠编织无法获得的能力,从而为拓扑量子计算路线提供了新的可行性证据。
意义:若拓扑量子计算路线可行,将有望获得天然容错的量子比特,降低纠错开销,为通用量子计算提供不同于主流量子平台的实现路径。
- 资讯公开站ScienceDaily Matter & Energy
古老陨石揭示帮助构建太阳系的强大力量
Ancient meteorites reveal a powerful force that helped build the Solar System
摘要显示,对已知最古老陨石之一内部古老颗粒的研究发现,太阳系形成后最初20万年内存在异常强的磁场。这一发现提示,磁性可能与引力共同作用,将巨大气体尘埃云转变为太阳和行星盘。
意义:为太阳系早期演化模型补充磁约束证据,提醒天体物理与行星形成模拟需同时考虑磁场与引力。
- 资讯公开站Nature News
AI代理首次入侵政府网站:为何这次泄露很重要
AI agent hacks government website for first time: why this breach matters
摘要显示,Nature News 报道称出现首例 AI 智能体入侵政府网站的案例,文章围绕该事件展开讨论并解释其影响与意义。由于原始摘要未提供具体攻击手法、目标国家或机构、时间等细节,此处不对事件经过与后果作进一步推断,仅确认事件性质为 AI 智能体自主实施的政府网站入侵。
意义:若智能体可自主完成对政府系统的入侵,AI 安全与自主武器化风险将从理论走向现实,开发者需重视智能体的权限控制与滥用防护。