\(\mathcal{L}=-\frac{1}{4}F_{\mu \nu }F^{\mu \nu }+i\={\psi }\cancel{D}\psi +\psi _{i}y_{ij}\psi _{j}\phi +hc+|D_{\mu }\phi |{}^{2}-V(\phi )+\frac{1}{16\pi G}R\) Post #10
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RE re: @lil_hellraiser · 42 subscribers 
\(\mathcal{L}=-\frac{1}{4}F_{\mu \nu }F^{\mu \nu }+i\={\psi }\cancel{D}\psi +\psi _{i}y_{ij}\psi _{j}\phi +hc+|D_{\mu }\phi |{}^{2}-V(\phi )+\frac{1}{16\pi G}R\)