From the open-string pair production rate of two D-branes, the author extracts Lorentz-invariant Schwinger rates for scalar, spinor, and vector pairs in two through seven dimensions.
Finite temperature Schwinger pair production in coexistent electric and magnetic fields
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abstract
We compute Schwinger pair production rates at finite temperature, in the presence of homogeneous, concurrent electric and magnetic fields. Expressions are obtained using the semiclassical worldline instanton formalism, to leading order, for spin-$0$ and spin-$\frac{1}{2}$ particles. The derived results are valid for weak coupling and fields. We thereby extend previous seminal results in the literature, to coexistent electric and magnetic fields, and fermions.
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The explicit Lorentz invariant QED pair production rates from superstrings
From the open-string pair production rate of two D-branes, the author extracts Lorentz-invariant Schwinger rates for scalar, spinor, and vector pairs in two through seven dimensions.