- 物理学研究中的陷阱:论现代物理学的错误所在
- 欧阳森
- 544字
- 2024-11-01 00:49:17
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2012年10月17日笔者拜访冯天岳先生,摄于北京周口店,冯先生提议可将建立宇宙和物理常数的联系作为一个研究方向
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笔者与《亚夸克理论》第一作者焦善庆教授
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笔者与《亚夸克理论》第二作者蓝其开教授
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2012年10月14日笔者拜访徐宽教授,摄于北京清华徐老家中
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图1-1 用宇宙微波背景辐射检验电荷—宇称—时间反演(CPT)对称性
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图1-2 BICEP研究组公布的引力波时空涟漪证据
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图2-1 γp→J/ψπ+n的总截面
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图2-2 γp→J/ψωp的总截面
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图2-3 U-boson粒子衰变产生的正电子能量谱
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图2-4 Transverse momentum dependence of the elliptic flow of midpseudorapidity charged parti-cles in midcentral Au+Au collisions at=7.7 GeV for different values of the parton scatter-ing cross section σ and the ratio RV of the vector coupling constant GV to the scalar coupling con-stant G in the NJL model.The experimental data from the STAR Collaboration are from Ref.28.
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图2-5 Transverse momentum dependence of the initial elliptic flows of midpseudorapidity nu-cleons and kaons(solid lines with squares)as well as their antiparticles(dashed lines withspheres)right after hadronization in minibias Au+Au collisions a=7.7GeV for different values of R V=GV/G in the NJL model.
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图2-6 Same as Fig.2 but for results after hadronic evolution.
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图2-7 Relative elliptic flow difference between nucleons and antinucleons as well as kaons and antikaons for different values of RV=GV/G in the NJL model compared with the STAR data.
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图2-8 μ子多重度的分布
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图2-9 质子、轻组分膝区拐点
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图2-10 HiRes能谱(笔者注:踝区能谱曲线)
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图2-11 大亚湾电子反中微子震荡概率数据
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图2-12 大亚湾中微子震荡能谱畸变数据
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图2-14 微波背景辐射强度—频率分布
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图2-15 以角尺度展现的宇宙微波背景辐射温度各向异性的能谱(多极矩)
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图2-16 哈勃第三代广域相机(WFC3)拍摄的ESO137-001
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图2-17 哈勃和钱德拉X射线图像的组合(发出X射线的炽热等离子体以蓝色表示,拖在星系后方极长的距离)