The answer on your question it is next formulas:
"j_1(x_\\mu) = \\Psi^*_0\\Psi_3 + \\Psi^*_1\\Psi_2 + \\Psi^*_2\\Psi_1 + \\Psi^*_3\\Psi_0"
"j_2(x_\\mu) = i\\Psi^*_0\\Psi_3 -i\\Psi^*_1\\Psi_2 + i\\Psi^*_2\\Psi_1 -i\\Psi^*_3\\Psi_0"
"j_3(x_\\mu) = -\\Psi^*_1\\Psi_3 + \\Psi^*_0\\Psi_2 - \\Psi^*_3\\Psi_1 + \\Psi^*_2\\Psi_0"
where "\\Psi_i^*" -complex conjugated component of the 4-vector of Dirac. Note, that "\\Psi_i = \\Psi_i(x_\\mu), \\Psi^*_i = \\Psi^*_i(x_\\mu), i = 0..3"
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