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The EM coupling term should be Hermitian. It is actually $\mathcal{H} = e j_mu A^\mu = e A^\mu \bar \psi \gamma_\mu \psi$$\mathcal{H} = e j_\mu A^\mu = e A^\mu \bar \psi \gamma_\mu \psi$. No i in the interaction term

The EM coupling term should be Hermitian. It is actually $\mathcal{H} = e j_mu A^\mu = e A^\mu \bar \psi \gamma_\mu \psi$. No i in the interaction term

The EM coupling term should be Hermitian. It is actually $\mathcal{H} = e j_\mu A^\mu = e A^\mu \bar \psi \gamma_\mu \psi$. No i in the interaction term

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The EM coupling term should be Hermitian. It is actually $\mathcal{H} = e j_mu A^\mu = e A^\mu \bar \psi \gamma_\mu \psi$. No i in the interaction term

The EM coupling term should be Hermitian. It is actually $\mathcal{H} = e j_mu A^\mu = e A^\mu \bar \psi \gamma_\mu \psi$

The EM coupling term should be Hermitian. It is actually $\mathcal{H} = e j_mu A^\mu = e A^\mu \bar \psi \gamma_\mu \psi$. No i in the interaction term

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The EM coupling term should be Hermitian. It is actually \mathcal{H} = e j_mu A^\mu = e A^\mu \bar \psi \gamma_\mu \psi$\mathcal{H} = e j_mu A^\mu = e A^\mu \bar \psi \gamma_\mu \psi$

The EM coupling term should be Hermitian. It is actually \mathcal{H} = e j_mu A^\mu = e A^\mu \bar \psi \gamma_\mu \psi

The EM coupling term should be Hermitian. It is actually $\mathcal{H} = e j_mu A^\mu = e A^\mu \bar \psi \gamma_\mu \psi$

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