finite systems WIP
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@ -405,6 +405,25 @@ todo different notation for the complex conjugation without transposition???
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, which has to be taken into consideration when evaluating quantities such
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as absorption or scattering cross sections.
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Similarly, the full regular operators can be composed
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\begin_inset Note Note
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status open
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\begin_layout Plain Layout
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better wording
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\end_layout
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\end_inset
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,
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\begin_inset Formula $\troprp ac=\troprp ab\troprp bc$
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\end_inset
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but truncation breaks this,
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\begin_inset Formula $\truncated{\troprp ac}L\ne\truncated{\troprp ab}L\truncated{\troprp bc}L.$
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\end_inset
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\end_layout
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\begin_layout Subsection
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@ -560,6 +579,52 @@ reference "eq:absorption CS single"
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\end_inset
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.
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The original incident field re-expanded around
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\begin_inset Formula $p$
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\end_inset
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-th particle reads according to
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\begin_inset CommandInset ref
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LatexCommand ref
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reference "eq:regular vswf translation"
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plural "false"
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caps "false"
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noprefix "false"
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\end_inset
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\begin_inset Formula
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\begin{equation}
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\rcoeffincp p=\troprp p{\square}\rcoeffp{\square}\label{eq:a_inc local from global}
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\end{equation}
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\end_inset
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whereas the contributions of fields scattered from each particle expanded
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around the global origin
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\begin_inset Formula $\vect r_{\square}$
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\end_inset
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is, according to
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\begin_inset CommandInset ref
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LatexCommand ref
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reference "eq:singular vswf translation"
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plural "false"
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caps "false"
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noprefix "false"
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\end_inset
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,
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\begin_inset Formula
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\begin{equation}
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\outcoeffp{\square}=\sum_{q\in\mathcal{P}}\troprp{\square}q\outcoeffp q.\label{eq:f global from local}
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\end{equation}
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\end_inset
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\end_layout
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\end_body
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