Some 1D lattice sums

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Marek Nečada 2018-11-11 07:06:35 +00:00
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@ -3399,6 +3399,39 @@ The only diverging factor here is apparently
\end_inset
\end_layout
\begin_layout Subsection
1D
\end_layout
\begin_layout Standard
One-dimensional lattice sums are provided in [REF LT, sect.
3].
However, these are the
\begin_inset Quotes eld
\end_inset
non-shifted
\begin_inset Quotes erd
\end_inset
sums,
\begin_inset Formula
\begin{eqnarray*}
\ell_{n}\left(\beta\right) & = & \sum_{j\in\ints}^{'}e^{i\beta aj}\mathcal{H}_{n}^{0}\left(aj\hat{\vect z}\right)\\
& = & \sum_{j\in\ints}^{'}e^{i\beta aj}h_{n}\left(\left|aj\right|\right)Y_{n}^{0}\\
& = & \sqrt{\frac{2n+1}{4\pi}}\sum_{j\in\ints}^{'}P_{n}^{0}\left(\sgn j\right)h_{n}\left(\left|aj\right|\right)e^{i\beta aj}\\
& = & \sqrt{\frac{2n+1}{4\pi}}\sum_{j\in\ints}^{'}\left(\sgn j\right)^{n}h_{n}\left(\left|aj\right|\right)e^{i\beta aj},
\end{eqnarray*}
\end_inset
where we used
\begin_inset Formula $P_{n}^{m}\left(\pm1\right)=\left(\pm1\right)^{n}\delta_{m0}$
\end_inset
\end_layout
\begin_layout Section