当前位置:首页 > 报告详情

DC25_SLIDES_KeynoteElectronicsForFutureHigh_Haber_V2.pdf

上传人: S** 编号:1240828 2026-05-16 56页 8.20MB

1、Information Classification:GeneralWelcome to ConferenceJanuary 2830,2025Santa Clara Convention Center1ExpoJanuary 2930,2025 Electronics for Future High Energy Particle CollidersCarl HaberPhysics DivisionLawrence Berkeley National Labchhaberlbl.gov1/28/2025Carl Haber LBNL2Design Con 20251/28/2025Desi

2、gn Con 20253chargedchargedneutral H.Becquerel(1896):observes that certain elements emit an invisible energy radioactivity This indicates that there is more to natural structure and dynamics than atoms,the Periodic Table,and chemical reactions E.Rutherford cataloged the known forms of radiation accor

3、ding to their penetrating power and response to applied magnetic fields Particle physics begins with the attempt to understand radiation and the structure of matter beyond the atomRutherford Experiment What is the structure of the atom?In 1906-13 Rutherfords students,Geiger and Marsden,measure the a

4、ngular distribution of alpha particles scattered by a thin gold foil The technique is to count florescent flashes on a phosphor screen While most pass with little deflection they observe occasional(1/8000)at large scattering angles.Rutherford(1911)mathematically describes this as alphas scattering f

5、rom a“point-like”heavy charged nucleus.1/28/2025Design Con 20254Archetype Modern day experiments in particle physics are conceptually similar to Rutherfords experiment we are still trying to understand the structure of matter,but on even smaller scales.Rutherfords experiment includes many of the ele

6、ments found in todays high energy experiments Scattering angle of a particle(position)Rate of scattering into a particular angular interval(time)Sensitive detecting media florescent screen Readout system their eyes Data logging pencil and paper Data analysis Rutherfords scattering theory1/28/2025Des

word格式文档无特别注明外均可编辑修改,预览文件经过压缩,下载原文更清晰!
三个皮匠报告文库所有资源均是客户上传分享,仅供网友学习交流,未经上传用户书面授权,请勿作商用。
1. **会议与主题**:2025年1月28-30日于圣克拉拉会议中心举办"Design Con 2025",主题为"未来高能粒子对撞机的电子学"。 2. **粒子物理发展**:从卢瑟福散射实验(1911)到现代对撞机(如LHC的14 TeV),核心目标是探索物质基本结构与宇宙早期历史。 3. **技术挑战**: - 辐射耐受性:需承受10^17 1 MeV中子当量/cm²(传感器)和10 GRad(电子学)。 - 时间分辨率:需达10-100 ps(如LGAD探测器)。 - 低质量设计:传感器厚度约50 μm(硅的辐射长度9.4 cm)。 4. **未来 collider**: - FCCee(2045年):e+e-对撞,90-240 GeV,用于标准模型精密测试。 - FCChh(2070年):质子对撞100 TeV,直接搜索新物理。 5. **创新方向**:宽禁带半导体(SiC/GaN)探测器、本地智能处理(数据压缩)、超薄传感器(如ALICE ITS3的50 μm MAPS)。
**粒子如何探测?** **未来 collider 有何挑战?** **辐射如何影响电子?**
客服
商务合作
小程序
服务号
折叠