Jove
Visualize
联系我们
JoVE
x logofacebook logolinkedin logoyoutube logo
关于 JoVE
概览领导团队博客JoVE 帮助中心
作者
出版流程编辑委员会范围与政策同行评审常见问题投稿
图书馆员
用户评价订阅访问资源图书馆顾问委员会常见问题
研究
JoVE JournalMethods CollectionsJoVE Encyclopedia of Experiments存档
教育
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab Manual教师资源中心教师网站
使用条款与条件
隐私政策
政策

相关概念视频

The Principle of Superposition and the Gravitational Field01:17

The Principle of Superposition and the Gravitational Field

1.3K
The principle of superposition applies to gravitational forces of objects that are sufficiently far apart. It states that the net gravitational force on a point object is the vector sum of the gravitational forces on it due to various objects. The principle helps calculate the force by listing the individual forces and then vectorially summing them up. However, it should be noted that the principle of superposition is not always apparent. In the presence of a second force, the first force could...
1.3K
Symmetry in Maxwell's Equations01:28

Symmetry in Maxwell's Equations

3.4K
Once the fields have been calculated using Maxwell's four equations, the Lorentz force equation gives the force that the fields exert on a charged particle moving with a certain velocity. The Lorentz force equation combines the force of the electric field and of the magnetic field on the moving charge. Maxwell's equations and the Lorentz force law together encompass all the laws of electricity and magnetism. The symmetry that Maxwell introduced into his mathematical framework may not be...
3.4K
Superposition Theorem01:18

Superposition Theorem

592
The superposition principle is a fundamental concept stating that in a linear circuit, the voltage across (or current through) an element can be determined by summing the individual contributions of each independent source acting in isolation. When dealing with linear circuits containing multiple independent sources, this principle serves as a valuable tool for analysis. To apply the superposition principle effectively, one should focus on a single independent source at a time while...
592
Trends in Lattice Energy: Ion Size and Charge02:54

Trends in Lattice Energy: Ion Size and Charge

23.9K
An ionic compound is stable because of the electrostatic attraction between its positive and negative ions. The lattice energy of a compound is a measure of the strength of this attraction. The lattice energy (ΔHlattice) of an ionic compound is defined as the energy required to separate one mole of the solid into its component gaseous ions. For the ionic solid sodium chloride, the lattice energy is the enthalpy change of the process:
23.9K
Gauss's Law: Planar Symmetry01:27

Gauss's Law: Planar Symmetry

7.9K
A planar symmetry of charge density is obtained when charges are uniformly spread over a large flat surface. In planar symmetry, all points in a plane parallel to the plane of charge are identical with respect to the charges. Suppose the plane of the charge distribution is the xy-plane, and the electric field at a space point P with coordinates (x, y, z) is to be determined. Since the charge density is the same at all (x, y) - coordinates in the z = 0 plane, by symmetry, the electric field at P...
7.9K
Nuclear Stability03:18

Nuclear Stability

18.8K
Protons and neutrons, collectively called nucleons, are packed together tightly in a nucleus. With a radius of about 10−15 meters, a nucleus is quite small compared to the radius of the entire atom, which is about 10−10 meters. Nuclei are extremely dense compared to bulk matter, averaging 1.8 × 1014 grams per cubic centimeter. If the earth’s density were equal to the average nuclear density, the earth’s radius would be only about 200 meters.
To hold positively charged protons together...
18.8K

您也可能阅读

相关文章

通过共同作者、期刊和引用图与本文相关的文章。

排序
Same author

New physics in resonant production of Higgs boson pairs.

Physical review letters·2015
Same author

Same-sign diboson signature from supersymmetry models with light Higgsinos at the LHC.

Physical review letters·2014
Same author

Radiative natural supersymmetry with a 125 GeV Higgs boson.

Physical review letters·2012
Same author

Neutrino mass hierarchy and octant determination with atmospheric neutrinos.

Physical review letters·2012
Same author

Total width of 125 GeV Higgs boson.

Physical review letters·2012
Same author

Differentiating the Higgs boson from the dilaton and radion at Hadron colliders.

Physical review letters·2012

相关实验视频

Updated: Jun 29, 2025

Setting Limits on Supersymmetry Using Simplified Models
07:46

Setting Limits on Supersymmetry Using Simplified Models

Published on: November 15, 2013

8.6K

从弦景观中出现的弱尺度超对称.

Howard Baer1, Vernon Barger2, Dakotah Martinez1

  • 1Homer L. Dodge Department of Physics and Astronomy, University of Oklahoma, Norman, OK 73019, USA.

Entropy (Basel, Switzerland)
|March 28, 2024
PubMed
概括

弦景观表明自然超对称性是最有可能的,希格斯质量约为125GeV. 这种自然超对称性预计将在未来的大强子对撞机升级时被发现.

关键词:
景观景观 景观 景观 景观这就是LCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLCLC弦理论中的弦理论.这是一种超对称的超对称性.

更多相关视频

Scalable Quantum Integrated Circuits on Superconducting Two-Dimensional Electron Gas Platform
05:39

Scalable Quantum Integrated Circuits on Superconducting Two-Dimensional Electron Gas Platform

Published on: August 2, 2019

9.6K
Comparison of Two Different Synthesis Methods of Single Crystals of Superconducting Uranium Ditelluride
04:51

Comparison of Two Different Synthesis Methods of Single Crystals of Superconducting Uranium Ditelluride

Published on: July 8, 2021

2.8K

相关实验视频

Last Updated: Jun 29, 2025

Setting Limits on Supersymmetry Using Simplified Models
07:46

Setting Limits on Supersymmetry Using Simplified Models

Published on: November 15, 2013

8.6K
Scalable Quantum Integrated Circuits on Superconducting Two-Dimensional Electron Gas Platform
05:39

Scalable Quantum Integrated Circuits on Superconducting Two-Dimensional Electron Gas Platform

Published on: August 2, 2019

9.6K
Comparison of Two Different Synthesis Methods of Single Crystals of Superconducting Uranium Ditelluride
04:51

Comparison of Two Different Synthesis Methods of Single Crystals of Superconducting Uranium Ditelluride

Published on: July 8, 2021

2.8K

科学领域:

  • 理论物理 理论物理
  • 弦理论中的弦理论.
  • 宇宙学的宇宙学是什么?

背景情况:

  • 超弦流量紧化为稳定模块和产生大量真空溶液提供了一个框架.
  • 弦景观是观测到的宇宙常数的主要解释,可以预测弱尺度超对称的出现.

研究的目的:

  • 为了研究不同超对称模型从弦景观中出现的概率.
  • 为了确定自然与微调超对称模型的概率.
  • 根据景观概率来预测粒子和希格斯质量.

主要方法:

  • 分析人类选择在弦景观中的弱尺度上的影响.
  • 计算基于参数空间大小的超对称模型出现的相对概率.
  • 导出sp粒子和希格斯质量的概率分布.

主要成果:

  • 自然的弱尺度超对称模型占据了更大的参数空间,因此更有可能.
  • 微调模型,如高尺度或分割超对称性,由于参数空间减少,不太可能出现.
  • 概率分布有利于希格斯玻色子质量 (mh) 约为125GeV,其中的微粒可能超出目前的LHC检测极限.

结论:

  • 自然超对称性是弦景观预测的最可能的场景.
  • 未来大型强子对撞机的升级预计将揭示自然的超对称性.
  • 这些发现与当前的实验数据一致,包括观察到的希格斯质量.