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通过施温格机制产生磁单极的搜索
B Acharya1, J Alexandre1, P Benes2
1Theoretical Particle Physics & Cosmology Group, Physics Department, King's College London, London, UK.
Nature
|February 3, 2022
概括
科学家在重离子碰撞中使用施温格机制寻找假设的磁. 大型强子对撞机的MoEDAL实验没有发现任何证据,
科学领域:
- 粒子物理学
- 高能物理
- 宇宙学
背景情况:
- 磁单极是标准模型之外的理论所预测的假设粒子.
- 施温格机制描述了来自强磁场的粒子生成,适用于电场和磁场.
- 目前还没有磁单极的实验证据.
研究的目的:
- 通过施温格机制寻找磁生产.
- 在有限大小的磁单极的质量上建立实验界限.
- 研究重离子碰撞产生的极端磁场中的现象.
主要方法:
- 在大型强子对撞机 (LHC) 中利用了MoEDAL实验.
- 暴露在1.8 × 10^9的- (Pb-Pb) 碰撞中的捕获探测器在5.02 TeV.
- 使用超导量子干扰装置 (SQUID) 磁力计检测磁电荷的扫描探测器.
主要成果:
- 在分析的Pb-Pb碰撞中没有检测到磁.
- 具有整数迪拉克电荷 (1,2,3) 和质量高达75 GeV/c2的磁单极在95%的置信度水平下被排除在外.
- 从碰撞器搜索中确定了有限尺寸磁单极的新下限质量.
结论:
- 在实验条件下,施温格机制没有产生可检测的磁.
- 这项搜索显著扩大了磁单极的以前的质量排除极限.
- 这项研究为预测磁断的理论提供了关键数据.
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