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Lagrangian Density

Lagrangian Density

Jan 27, 20241 min read

  • Physics

L=K−U=−21​□ϕ

  • L is the Lagrangian density for a spin 0 particle
  • K is the kinetic energy density
  • U is the potential energy density
  • □ is the d’Alembert operator
  • ϕ is a field

L=iΨˉγμ∂Xμ​Ψ−mΨˉΨ

  • Dirac Lagrangian
  • Leads to the Dirac equation

L=−41​FμνFμν​

  • Maxwell Lagrangian

L=16πG1​gμνRμν​

  • Einstein-Hilbert Lagrangian
  • Leads to Einstein’s equations

Graph View

  • L=K−U=−12□ϕ\displaystyle \mathscr{L}=\mathscr{K}-\mathscr{U}=-\frac{1}{2}\Box \phiL=K−U=−21​□ϕ
  • L=iΨˉγμ∂XμΨ−mΨˉΨ\displaystyle \mathscr{L}=i\bar{\Psi}\gamma^{\mu}\partial_{X^{\mu}}\Psi-m\bar{\Psi}\PsiL=iΨˉγμ∂Xμ​Ψ−mΨˉΨ
  • L=−14FμνFμν\displaystyle \mathscr{L}=-\frac{1}{4}F^{\mu \nu}F_{\mu \nu}L=−41​FμνFμν​
  • L=116πGgμνRμν\displaystyle \mathscr{L}=\frac{1}{16\pi G}g^{\mu \nu}R_{\mu \nu}L=16πG1​gμνRμν​

Backlinks

  • Klein-Gordon Field Theory
  • Lagrangian Density

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