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Equation 2 · Part 6 · From Origins to Frontier: A History of Particle Physics Beyond the Standard Model

Symbol O_i^(6)

LSMEFT=LSM+∑iciΛ2Oi(6)+O ⁣(1Λ4)\mathcal{L}_{\text{SMEFT}} = \mathcal{L}_{\text{SM}} + \sum_i \frac{c_i}{\Lambda^{2}} \mathcal{O}_i^{(6)} + \mathcal{O}\!\left(\frac{1}{\Lambda^{4}}\right)
Oi(6)\mathcal{O}_i^{(6)}

What this part means

a dimension-six operator built from Standard Model fields respecting its gauge symmetries.

Its job in the formula

O_i^(6) is one of the signed contributions combined to compute the quantity on the left.

Where the article explains it

Here each Oi(6)\mathcal{O}_i^{(6)} is a dimension-six operator built from Standard Model fields respecting its gauge symmetries, and cic_i is a dimensionless Wilson coefficient encoding the strength and structure of whatever heavy new physics generated it.

The passage around this formula

…Standard Model Effective Field Theory (SMEFT) adds higher-dimension operators, suppressed by inverse powers of some new physics scale Λ\Lambda , to the ordinary Standard Model Lagrangian: LSMEFT=LSM+∑iciΛ2Oi(6)+O ⁣(1Λ4)\mathcal{L}_{\text{SMEFT}} = \mathcal{L}_{\text{SM}} + \sum_i \frac{c_i}{\Lambda^{2}} \mathcal{O}_i^{(6)} + \mathcal{O}\!\left(\frac{1}{\Lambda^{4}}\right). Here each Oi(6)\mathcal{O}_i^{(6)} is a dimension-six operator built from Standard Model fields respecting its gauge symmetries, and cic_i is a dimensionless Wilson coefficient encoding the strength and structure of whatever heavy new physics generated it. This is not a discovery claim; it is a bookkeeping device,…

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Learn the underlying idea

A subscript is a label attached below a symbol. It often selects a time step, component, category, or member of a sequence.

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