Fine-structure constant
Physical constant quantifying the strength of the electromagnetic interaction between elementary charged particles
In physics, the fine-structure constant, also known as the Sommerfeld constant, commonly denoted by α (the Greek letter alpha), is a fundamental physical constant that quantifies the strength of the electromagnetic interaction between elementary charged particles. It is a dimensionless quantity (dimensionless physical constant), independent of the system of units used, which is related to the strength of the coupling of an elementary charge e with the electromagnetic field, by the formula α = e 2 ( 4 π ε 0 ℏ c ) − 1 {\textstyle \alpha ={e^{2}}\...
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Fine-structure constant
Physical constant quantifying the strength of the electromagnetic interaction between elementary charged particles
In physics, the fine-structure constant, also known as the Sommerfeld constant, commonly denoted by α (the Greek letter alpha), is a fundamental physical constant that quantifies the strength of the electromagnetic interaction between elementary charged particles. It is a dimensionless quantity (dimensionless physical constant), independent of the system of units used, which is related to the strength of the coupling of an elementary charge e with the electromagnetic field, by the formula α = e 2 ( 4 π ε 0 ℏ c ) − 1 {\textstyle \alpha ={e^{2}}\...
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From Wikipedia
In physics, the fine-structure constant, also known as the Sommerfeld constant, commonly denoted by α (the Greek letter alpha), is a fundamental physical constant that quantifies the strength of the electromagnetic interaction between elementary charged particles. It is a dimensionless quantity (dimensionless physical constant), independent of the system of units used, which is related to the strength of the coupling of an elementary charge e with the electromagnetic field, by the formula α = e 2 ( 4 π ε 0 ℏ c ) − 1 {\textstyle \alpha ={e^{2}}\left(4\pi \varepsilon _{0}\hbar c\right)^{-1}} . Its numerical value is approximately 0.0072973525643 ≈ 137.035999177−1, with a relative uncertainty of 1.6×10−10. The constant was named by Arnold Sommerfeld, who introduced it in 1916 when extending the Bohr model of the atom. α {\displaystyle \alpha } quantified the gap in the fine structure of the spectral lines of the hydrogen atom, which had been measured precisely by the Michelson–Morley experiment in 1887. Why the constant should have this value is not understood, but there are a number of ways to measure its value (see Precision tests of QED).
Text: Wikipédia, CC BY-SA 4.0. · Image: Smithsonian Institution (Public domain) ·
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