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首页> 外文期刊>Acta physica Polonica, B. Particle Physics and Field Theory, Nuclear Physics, Theory of Relativity >The Cosmological Constant Puzzle: Vacuum Energies from QCD to Dark Energy
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The Cosmological Constant Puzzle: Vacuum Energies from QCD to Dark Energy

机译:宇宙常数难题:从QCD到暗能量的真空能

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摘要

The accelerating expansion of the Universe points to a small positive vacuum energy density and negative vacuum pressure. A strong candidate is the cosmological constant in Einstein’s equations of General Relativity. The vacuum dark energy density extracted from astrophysics is 10 56 times smaller than the value expected from the Higgs potential in Standard Model particle physics. The dark energy scale is however close to the range of possible values expected for the light neutrino mass. We investigate this physics in a simple toy model where the chirality of the neutrino is treated by analogy as an Ising-like “spin” degree of freedom.
机译:宇宙的加速膨胀指向较小的正真空能量密度和负真空压力。爱因斯坦广义相对论方程中的宇宙常数是一个很强的候选人。从天体物理学中提取的真空暗能量密度比标准模型粒子物理学中希格斯势所期望的值小10 56 倍。但是,暗能级接近轻中微子质量的预期可能值范围。我们在一个简单的玩具模型中研究了这种物理学,在这种玩具模型中,中微子的手性被类比为类似于Ising的“自旋”自由度。

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