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<title>GNU Scientific Library &ndash; Reference Manual: Coulomb Wave Function Normalization Constant</title>

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<a name="Coulomb-Wave-Function-Normalization-Constant"></a>
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<p>
Previous: <a href="Coulomb-Wave-Functions.html#Coulomb-Wave-Functions" accesskey="p" rel="previous">Coulomb Wave Functions</a>, Up: <a href="Coulomb-Functions.html#Coulomb-Functions" accesskey="u" rel="up">Coulomb Functions</a> &nbsp; [<a href="Function-Index.html#Function-Index" title="Index" rel="index">Index</a>]</p>
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<a name="Coulomb-Wave-Function-Normalization-Constant-1"></a>
<h4 class="subsection">7.7.3 Coulomb Wave Function Normalization Constant</h4>

<p>The Coulomb wave function normalization constant is defined in
Abramowitz 14.1.7.
</p>
<dl>
<dt><a name="index-gsl_005fsf_005fcoulomb_005fCL_005fe"></a>Function: <em>int</em> <strong>gsl_sf_coulomb_CL_e</strong> <em>(double <var>L</var>, double <var>eta</var>, gsl_sf_result * <var>result</var>)</em></dt>
<dd><p>This function computes the Coulomb wave function normalization constant
<em>C_L(\eta)</em> for <em>L &gt; -1</em>.
</p></dd></dl>

<dl>
<dt><a name="index-gsl_005fsf_005fcoulomb_005fCL_005farray"></a>Function: <em>int</em> <strong>gsl_sf_coulomb_CL_array</strong> <em>(double <var>Lmin</var>, int <var>kmax</var>, double <var>eta</var>, double <var>cl</var>[])</em></dt>
<dd><p>This function computes the Coulomb wave function normalization constant
<em>C_L(\eta)</em> for <em>L = Lmin \dots Lmin + kmax</em>, <em>Lmin &gt; -1</em>.
</p></dd></dl>







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