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change order of indices
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1 changed files with 2 additions and 2 deletions
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@ -519,13 +519,13 @@ find
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\begin{equation}
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\begin{equation}
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\label{eq:39}
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\label{eq:39}
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\ev{{b_{\outputf}(x,t)}} =
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\ev{{b_{\outputf}(x,t)}} =
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\ev{b_{\inputf}(x,t)} - ∑_{σ=\pm}∫_{0}^{τ(x,t)}χ_{σ,\sgn(x)}(τ(x,t),s) \ev{b_{\inputf,σ}(s)} \dd{s}
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\ev{b_{\inputf}(x,t)} - ∑_{σ=\pm}∫_{0}^{τ(x,t)}χ_{\sgn(x),σ}(τ(x,t),s) \ev{b_{\inputf,σ}(s)} \dd{s}
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\end{equation}
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\end{equation}
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with the time non-local susceptibility for the left and right moving
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with the time non-local susceptibility for the left and right moving
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input fields
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input fields
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\begin{equation}
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\begin{equation}
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\label{eq:40}
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\label{eq:40}
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χ_{σ,δ}(t,s) = \frac{π n_{B}}{c}Θ(t) ∑_{γ}\pqty{U^{δ}_{γ}(t)}^\astχ_{γ}(t-s)U^{σ}_{γ}(s).
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χ_{δ,σ}(t,s) = \frac{π n_{B}}{c}Θ(t) ∑_{γ}\pqty{U^{δ}_{γ}(t)}^\astχ_{γ}(t-s)U^{σ}_{γ}(s).
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\end{equation}
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\end{equation}
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For an input field with no left-moving components and a measurement
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For an input field with no left-moving components and a measurement
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