网易首页 > 网易号 > 正文 申请入驻

9位国际顶尖学者荣膺首届基础科学奖章,周一北京开讲 | 直播预约

0
分享至

2026国际基础科学大会(ICBS 2026)将于8月9日至21日在北京举行,主题为“聚焦基础科学,引领人类未来”。8月9日大会开幕暨颁奖典礼后,400余位国际顶尖科学家将与近千名海内外优秀学者、青年学子齐聚怀柔科学城,展开为期两周的深度学术交流,共探基础科学最前沿。

9位2026基础科学奖章得主——克莱尔·瓦赞(Claire Voisin)、姚鸿泽(Horng-Tzer Yau)、张寿武、刘若微(Andrea J. Liu)、王贻芳、文小刚、鲍哲南、庄小威、张锋将在大会期间带来精彩的基础科学报告,其中8月10日(星期一)3场,8月11日(星期二)3场,8月12日(星期三)3场。



此外,还有4位菲尔兹奖得主、1位图灵奖得主,多位邵逸夫奖、沃尔夫奖、狄拉克奖、基础科学突破奖得主以及数十位中外院士将出席盛会并发表高水平学术报告,分享各自在基础科学领域的研究成果与深刻见解。

国际基础科学大会始于2023年,由丘成桐院士担任大会主席,是国际基础科学领域的顶级学术盛会,重点围绕数学、物理、信息科学与工程三大基础科学领域展开深度科学交流。

“返朴”作为本次大会合作媒体,将对大会多场高质量学术报告同步直播。由于许多报告同时进行,且场次甚多,难以一一尽播,播出日程也可能视需求改变,欢迎广大朋友关注返朴微信订阅号返朴微信视频号,留意相关通知,不错过这场顶级学术盛会。

Basic Science Lecture

基础科学报告





时间:

8月10日 上午8:30-9:30

地点:

BIMSA-A2 报告厅

题目:

Random Matrices: Wigner Universality, Anderson Delocalization, and Beyond

摘要:

This lecture reviews recent advances in random matrix theory, focusing on the past two decades. At the core is Wigner’s universality thesis, which states that spectral statistics of highly correlated systems mirror those of classical random matrix ensembles. Anderson’s localization–delocalization transition extends this idea beyond mean-field models. We highlight major results, including the resolution of the Wigner–Dyson–Mehta conjecture, the Sarnak–Miller–Novikoff–Sabelli conjecture on Ramanujan graphs, and universality and delocalization for band matrices and block Anderson models. We first revisit the three-step approach to universality in mean-field matrices and its limitations for non-mean-field cases. We then introduce a method based on the loop hierarchy and its tree approximation, leading to quantum diffusion. Finally, we show how this perspective adapts the three-step strategy to establish universality for non-mean-field models.



时间:

8月10日 上午9:40-10:40

地点:

BIMSA-A2 报告厅

题目:

Tunable Matter

摘要:

In 1972 Phil Andersen articulated the motto of condensed matter physics as “More is different.” However, for most condensed matter systems many more is quite similar to more. Here I argue for a class of condensed matter, “tunable matter,” in which many more is more different—the behaviors of more and of many more can be quite different. A familiar example of tunable matter is the brain, whose cognitive capabilities increase as size increases from 302 neurons (C. Elegans) to a million neurons (honeybees) to 100 billion neurons (humans). Tunable matter extends far beyond the Hopfield model, which exemplifies this behavior. Indeed, I propose that tunable matter provides a unifying conceptual framework for understanding emergent collective function in a wide class of biological systems.



时间:

8月10日 上午10:50-11:50

地点:

BIMSA-A2 报告厅

题目:

Exploration of Biological Diversity

摘要:

Many powerful molecular biology tools have their origin in nature, and, often, microbial life. From restriction enzymes to CRISPR-Cas9, microbes utilize a diverse array of systems to get ahead evolutionarily. We are interested in exploring this natural diversity through bioinformatics, biochemical, and molecular work to better understand the fundamental ways in which living organisms sense and respond to their environment and ultimately to harness these systems to improve human health. Building on our demonstration that Cas9 can be repurposed for precision genome editing in mammalian cells, we began looking for novel CRISPR-Cas systems that may have other useful properties. This led to the discovery of several new CRISPR systems, including the CRISPR-Cas13 family that target RNA, rather than DNA. We developed a toolbox for RNA modulation based on Cas13, including methods for precision base editing. We are expanding our biodiscovery efforts to search for new microbial proteins that may be adapted for applications beyond genome and transcriptome modulation, capitalizing on the growing volume of microbial genomic sequences and building on our bioengineering expertise. We are particularly interested in identifying new therapeutic modalities and vehicles for delivering cellular and molecular cargo. We hope that this combination of tools and delivery modes will accelerate basic research into human disease and open up new therapeutic possibilities.

Basic Science Lecture

基础科学报告





时间:

8月11日 上午8:30-9:30

地点:

BIMSA-A2 报告厅

题目:

Points and zero-cycles of algebraic varieties

摘要:

Given an algebraic variety X defined over a field K, the closed points of X are defined over K if K is algebraically closed, and over a finite extension of K otherwise. In order to study them, and the corresponding finite extensions, it is useful to introduce the Chow group of zero-cycles of X. When the field is the field of complex numbers, this Chow group contains a lot of information on the global geometry of X, in particular it controls the holomorphic forms on X. This Chow group is trivial when X is a Fano variety over the complex numbers, but is very interesting to study in the case of a Fano variety over a nonalgebraically closed field and it can be used to study rationality questions. I will discuss boundedness/unboundedness for this Chow group, that parallels the notion of infinite dimensionality developed by Mumford in the setting of varieties defined over the complex numbers.



时间:

8月11日 上午9:40-10:40

地点:

BIMSA-A2 报告厅

题目:

From Topological Order to a Beyond-Group Theory of Symmetry

摘要:

Symmetry is one of the central ideas of physics. It helps explain why materials have their universal properties, why fundamental forces act in particular ways, and why the laws of nature are so beautifully organized. For more than a century, physicists have described symmetry using the mathematics of groups: rotations, reflections, and other transformations that leave a system unchanged. This picture has been enormously successful. But it is not the full story. In this talk, I will describe a new and much richer view of symmetry that has emerged in recent years, where symmetry is not just a fixed transformation acting on matter. Instead, it is determined by the set of allowed local operations. Once symmetry is understood in this way, striking new possibilities appear: symmetries that act on strings and membranes rather than particles, symmetries that cannot be confined to a subsystem, and symmetries that cannot even be reversed. These new symmetries are not isolated curiosities. They obey elegant rules of fusion and braiding, closely related to the structure of topological order. This leads to a remarkable idea: the symmetries are the boundary manifestation, or shadow, of topological order in one higher dimension. Since symmetry lies at the foundation of so much of physics, a new understanding of symmetry may transform the subject at its roots. I will explain how this idea reshapes our picture of phases of matter, phase transitions, and quantum field theories -- and why it may mark the beginning of a new chapter in fundamental physics.



时间:

8月11日 上午10:50-11:50

地点:

BIMSA-A2 报告厅

题目:

From Electronics Skin to NeuroString

摘要:

Skin-inspired electronics aim to replicate the sensing and signal processing functions of human skin for applications in robotics and healthcare. In this talk, I first discuss realizing electronic skin – an electronic sensing system that mimics the human sense of touch through distributed sensor arrays and biologically inspired signal encoding. We develop high-density tactile sensors capable of capturing pressure, temperature, and dynamic contact across large areas, enabling spatially resolved perception. Beyond signal acquisition, we implement spike-based encoding strategies that transform continuous tactile outputs into spike-train signals, allowing efficient transmission and processing of sensory information. These electronic skin systems are applied to robotic platforms to enhance dexterous manipulation and provide rich tactile feedback. Building on this foundation, we extend the concept to fiber-based, implantable devices, termed “NeuroString,” designed for minimally invasive interfacing with tissue. These platforms enable multiplexed sensing of physiological and chemical signals within the body. Together, this work outlines a pathway from biomimetic electronic skin to implantable bioelectronic systems, bridging external sensing and internal physiological monitoring for next-generation human–machine interfaces.

Basic Science Lecture

基础科学报告





时间:

8月12日 上午8:30-9:30

地点:

BIMSA-A2 报告厅

题目:

From Euclid to Gross--Zagier: A Mathematical Journey Across Two Millennia

摘要:

This lecture traces two mathematical developments that evolved largely independently over nearly two thousand years. One begins with Euclid's parametrization of right triangles and culminates in the arithmetic of elliptic curves and Heegner points. The other starts with Euler's and Dirichlet's work on prime numbers and leads to the theory of L-functions and their special values. The Gross–Zagier formula reveals a remarkable connection between these two worlds by expressing the arithmetic height of a Heegner point as the central derivative of an L-function. I will also describe some of its arithmetic applications and its far-reaching generalizations to Shimura curves and Shimura varieties. The story illustrates a recurring theme in mathematics: ideas developed in distant areas, often centuries apart, can ultimately converge to illuminate the same arithmetic phenomena.



时间:

8月12日 上午9:40-10:40

地点:

BIMSA-A2 报告厅

题目:

Higgs and Neutrinos: Portal to the Future of Particle Physics

摘要:

After the discovery of Higgs, the Standard Model (SM) is basically completed and particle physics is now at a turning point. On the one hand, SM is just an effective theory at current energy scale with a number of questions not yet answered. On the other hand, experimental evidence beyond the SM have been observed. It is commonly believed that a further understanding of physics at higher energies or deeper levels is needed, to be guided by more experimental discoveries. For such a purpose, Higgs and Neutrinos are the two main portals. I will describe our efforts along these two directions. One is based on the Jiangmen Underground Neutrino Observatory (JUNO) which just started the data taking last year. Another one is the Circular Electron-Positron Collider (CEPC) with a circumference of 100km. After 12 years efforts, CEPC is almost ready for construction. I will describe its design and R&D achievements.



时间:

8月12日 上午10:50-11:50

地点:

BIMSA-A2 报告厅

题目:

Spatially resolved single-cell genomics and functional genomics

摘要:

Cell and tissue functions arise from coordinated activities of thousands of genes expressed in numerous different types of cells. Understanding the functions of cells and tissues thus requires imaging at the genome scale, which will advance our understanding in many areas of biology, ranging from the regulation of gene expression in cells to the diversity, organization, and functions of cells in complex tissues. We developed a single-cell genome-scale imaging method, multiplexed error-robust fluorescence in situ hybridization (MERFISH), which enables spatially resolved single-cell transcriptomics, epigenomics, 3D genomics, and functional genomics. The ability of MERFISH to perform single-cell transcriptomic profiling in intact tissues allows the identification, spatial mapping, and functional investigation of distinct cell types in intact tissues. Spatial epigenomics and 3D-genomics additionally provide insights into the gene regulatory mechanisms that give rise to the distinct cell types. MERFISH-based functional genomics further allows genotype-phenotype mapping of cells in vivo, providing a high-throughput approach to investigate molecular mechanisms of cell and tissue functions. In this talk, I will describe the MERFISH technology and its applications, with a focus on the molecular, spatial, and functional organizations of distinct cell types in the brain and genetic regulators of liver functions.

ICBS 2026 直播平台

ICBS官网

丘成桐数学科学中心B站



ICBS 2026 合作媒体



特别声明:以上内容(如有图片或视频亦包括在内)为自媒体平台“网易号”用户上传并发布,本平台仅提供信息存储服务。

Notice: The content above (including the pictures and videos if any) is uploaded and posted by a user of NetEase Hao, which is a social media platform and only provides information storage services.

相关推荐
热点推荐
为什么坦克几乎不用 Windows?

为什么坦克几乎不用 Windows?

虎嗅APP
2026-08-08 18:19:05
八九十年代主政广东的梅州籍省级领导一览!

八九十年代主政广东的梅州籍省级领导一览!

一口娱乐
2026-08-09 02:35:20
不必填海造岛了!菲律宾破船赖了27年,中国用300倍体量反将一军

不必填海造岛了!菲律宾破船赖了27年,中国用300倍体量反将一军

萧鮖记录风土人情
2026-08-08 21:33:44
中国公开赛:吴宜泽连丢三赛点后绝杀姚鹏成,新科世界冠军进16强

中国公开赛:吴宜泽连丢三赛点后绝杀姚鹏成,新科世界冠军进16强

世界体坛观察家
2026-08-08 23:17:06
0-1,成都蓉城被全面碾压,场边发生离奇一幕,球迷:这就是中超特色

0-1,成都蓉城被全面碾压,场边发生离奇一幕,球迷:这就是中超特色

我就是一个说球的
2026-08-08 22:26:48
乔家大院当年富可敌国,日军本想打劫,看到门口悬挂一物望而却步

乔家大院当年富可敌国,日军本想打劫,看到门口悬挂一物望而却步

文史道
2026-08-03 14:15:53
被央视点名批评的6部烂剧,几乎全被下架,你看过几部?

被央视点名批评的6部烂剧,几乎全被下架,你看过几部?

小Q侃电影
2026-07-04 23:13:02
闹大了!戚薇AI短剧因雷霆视角,引发全网热议,账号被冲评论区沦陷

闹大了!戚薇AI短剧因雷霆视角,引发全网热议,账号被冲评论区沦陷

娱乐圈笔娱君
2026-08-07 15:57:47
情侣在深圳一酒店半夜熟睡遭陌生男闯入,其开灯后直接站在床前,当事人:整夜没睡,伴侣被看光,觉得不受尊重;酒店事后承认严重工作失误

情侣在深圳一酒店半夜熟睡遭陌生男闯入,其开灯后直接站在床前,当事人:整夜没睡,伴侣被看光,觉得不受尊重;酒店事后承认严重工作失误

大风新闻
2026-08-07 11:30:13
气象专家:台风“白海豚”制造的累计降水量或超过“巴威”

气象专家:台风“白海豚”制造的累计降水量或超过“巴威”

新京报
2026-08-08 10:50:05
张颖颖怒怼马筱梅之后!账号带货功能消失,背后真相耐人寻味

张颖颖怒怼马筱梅之后!账号带货功能消失,背后真相耐人寻味

情感大头说说
2026-08-09 00:33:24
明知道不是张雪峰,网友仍不远千里赶过来握手致谢

明知道不是张雪峰,网友仍不远千里赶过来握手致谢

映射生活的身影
2026-08-08 09:05:30
太离谱了!再3年詹姆斯就能拿NBA退休金,数字曝光,常人望尘莫及

太离谱了!再3年詹姆斯就能拿NBA退休金,数字曝光,常人望尘莫及

大西体育
2026-08-08 20:05:22
震惊!网传400多部电视剧拍完即封存,大多都是大明星主演,上亿成本打水漂,为何迟迟播不了

震惊!网传400多部电视剧拍完即封存,大多都是大明星主演,上亿成本打水漂,为何迟迟播不了

火山詩话
2026-08-07 06:59:41
A股:全体股民要做好准备了,不出意外,下周一,8月10日,可能这样走

A股:全体股民要做好准备了,不出意外,下周一,8月10日,可能这样走

风风顺
2026-08-09 01:00:03
时代落幕:本田正式暂停在华燃油车厂,日系燃油车退出中国倒计时

时代落幕:本田正式暂停在华燃油车厂,日系燃油车退出中国倒计时

民间胡扯老哥
2026-08-08 04:26:55
张本美和:王艺迪没有破绽!借主场之力完成复仇,我的目标是夺冠

张本美和:王艺迪没有破绽!借主场之力完成复仇,我的目标是夺冠

排球黄金眼
2026-08-08 22:58:19
湖北安陆交警副大队长王仁科,凌晨趁妻子熟睡时用哑铃将其杀害,连夜弃尸于三百里外的荒山,最终因一个枕头在2004年被抓捕归案

湖北安陆交警副大队长王仁科,凌晨趁妻子熟睡时用哑铃将其杀害,连夜弃尸于三百里外的荒山,最终因一个枕头在2004年被抓捕归案

人生录
2026-07-21 00:10:03
安徽两市市委书记,同日调整!另有一地发布最新人事

安徽两市市委书记,同日调整!另有一地发布最新人事

凤凰网安徽
2026-08-08 16:21:59
巴萨第6人走了!队长阿劳霍深夜官宣离队,1600万年薪租借利物浦

巴萨第6人走了!队长阿劳霍深夜官宣离队,1600万年薪租借利物浦

侃球先锋
2026-08-08 14:38:35
2026-08-09 04:48:49
返朴 incentive-icons
返朴
科学新媒体“返朴”,科普中国子品牌,倡导“溯源守拙,问学求新”。
4328文章数 15946关注度
往期回顾 全部

科技要闻

SpaceX最快下周完成600亿美元收购Cursor

头条要闻

十多万人报名的考试成绩全作废 考生:为何让别人买单

头条要闻

十多万人报名的考试成绩全作废 考生:为何让别人买单

体育要闻

蓉城0-1玉昆 中超6轮不胜仍13分领跑 奥斯卡头球制胜+赛季16球

娱乐要闻

萧敬腾坦白!与大14岁妻子选择丁克

财经要闻

一枚“回旋镖”,击中王思聪

汽车要闻

华为乾崑+大六座 星海V6预售8.99万元起

态度原创

家居
亲子
教育
房产
艺术

家居要闻

2026建博会(广州) 公装联探展交流活动

亲子要闻

我们演技派小面就这么堂堂来袭了!

教育要闻

跨越4800公里,是支教最动人回响:新疆女孩偶遇支教老师哭红眼

房产要闻

一手信息流出!仁恒雲启西岸开盘,爆卖110套!

艺术要闻

她们在腿上开画展,尺度惊人却没人骂“低俗”,反而看呆百万网友:这身体,是行走的美术馆!

无障碍浏览 进入关怀版