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		<title><![CDATA[Multiwfn forum / TD-DFT transition probabilities from ORCA output]]></title>
		<link>http://sobereva.com/wfnbbs/viewtopic.php?id=701</link>
		<description><![CDATA[The most recent posts in TD-DFT transition probabilities from ORCA output.]]></description>
		<lastBuildDate>Tue, 16 Aug 2022 06:22:05 +0000</lastBuildDate>
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			<title><![CDATA[Re: TD-DFT transition probabilities from ORCA output]]></title>
			<link>http://sobereva.com/wfnbbs/viewtopic.php?pid=2633#p2633</link>
			<description><![CDATA[<p>Thank You Prof. Tian...</p>]]></description>
			<author><![CDATA[dummy@example.com (prasanta13)]]></author>
			<pubDate>Tue, 16 Aug 2022 06:22:05 +0000</pubDate>
			<guid>http://sobereva.com/wfnbbs/viewtopic.php?pid=2633#p2633</guid>
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			<title><![CDATA[Re: TD-DFT transition probabilities from ORCA output]]></title>
			<link>http://sobereva.com/wfnbbs/viewtopic.php?pid=2631#p2631</link>
			<description><![CDATA[<p>0.380347 is contribution of this configuration (38.03%) to excitation, which corresponds to 100*(-0.61672301)^2</p>]]></description>
			<author><![CDATA[dummy@example.com (sobereva)]]></author>
			<pubDate>Sat, 13 Aug 2022 11:41:03 +0000</pubDate>
			<guid>http://sobereva.com/wfnbbs/viewtopic.php?pid=2631#p2631</guid>
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			<title><![CDATA[Re: TD-DFT transition probabilities from ORCA output]]></title>
			<link>http://sobereva.com/wfnbbs/viewtopic.php?pid=2630#p2630</link>
			<description><![CDATA[<p>Thank you, Professor Tian. I get that part. Can you please tell me what the following means?<br /> 139a -&gt; 141a&#160; :&#160; &#160; &#160;0.380347 (c= -0.61672301)<br />orb pairs&#160; &#160; &#160; &#160; &#160; &#160; &#160; &#160; config coeff&#160; &#160;??<br />I get orbital pairs, but the next two numbers bothers me. What are these?</p>]]></description>
			<author><![CDATA[dummy@example.com (prasanta13)]]></author>
			<pubDate>Sat, 13 Aug 2022 05:13:59 +0000</pubDate>
			<guid>http://sobereva.com/wfnbbs/viewtopic.php?pid=2630#p2630</guid>
		</item>
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			<title><![CDATA[Re: TD-DFT transition probabilities from ORCA output]]></title>
			<link>http://sobereva.com/wfnbbs/viewtopic.php?pid=2629#p2629</link>
			<description><![CDATA[<p>Please search &quot;ORCA users&quot; in Section 3.21.A of Multiwfn manual. You need to use &quot;tprint 1E-8&quot; to print more configurations.</p>]]></description>
			<author><![CDATA[dummy@example.com (sobereva)]]></author>
			<pubDate>Fri, 12 Aug 2022 11:38:35 +0000</pubDate>
			<guid>http://sobereva.com/wfnbbs/viewtopic.php?pid=2629#p2629</guid>
		</item>
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			<title><![CDATA[TD-DFT transition probabilities from ORCA output]]></title>
			<link>http://sobereva.com/wfnbbs/viewtopic.php?pid=2628#p2628</link>
			<description><![CDATA[<p>Dear Prof Tian,<br />I have performed vertical excitation using ORCA (default setting) with RSH/def2-TZVP.<br />The output is this, (only printing interesting texts)<br />STATE&#160; 1:&#160; E=&#160; &#160;0.085477 au&#160; &#160; &#160; 2.326 eV&#160; &#160; 18760.0 cm**-1 &lt;S**2&gt; =&#160; &#160;0.000000<br />&#160; &#160;139a -&gt; 141a&#160; :&#160; &#160; &#160;0.380347 (c= -0.61672301)<br />&#160; &#160;139a -&gt; 142a&#160; :&#160; &#160; &#160;0.021636 (c= -0.14709245)<br />&#160; &#160;139a -&gt; 144a&#160; :&#160; &#160; &#160;0.029537 (c=&#160; 0.17186373)<br />&#160; &#160;140a -&gt; 141a&#160; :&#160; &#160; &#160;0.493712 (c= -0.70264618)<br />&#160; &#160;140a -&gt; 142a&#160; :&#160; &#160; &#160;0.021983 (c= -0.14826775)<br />&#160; &#160;140a -&gt; 144a&#160; :&#160; &#160; &#160;0.030323 (c=&#160; 0.17413609)</p><p>STATE&#160; 2:&#160; E=&#160; &#160;0.085954 au&#160; &#160; &#160; 2.339 eV&#160; &#160; 18864.8 cm**-1 &lt;S**2&gt; =&#160; &#160;0.000000<br />&#160; &#160;139a -&gt; 141a&#160; :&#160; &#160; &#160;0.493490 (c=&#160; 0.70248856)<br />&#160; &#160;139a -&gt; 142a&#160; :&#160; &#160; &#160;0.022278 (c= -0.14925782)<br />&#160; &#160;139a -&gt; 144a&#160; :&#160; &#160; &#160;0.027986 (c=&#160; 0.16728926)<br />&#160; &#160;140a -&gt; 141a&#160; :&#160; &#160; &#160;0.380403 (c= -0.61676836)<br />&#160; &#160;140a -&gt; 142a&#160; :&#160; &#160; &#160;0.021947 (c=&#160; 0.14814422)<br />&#160; &#160;140a -&gt; 144a&#160; :&#160; &#160; &#160;0.027699 (c= -0.16642982)</p><p>STATE&#160; 3:&#160; E=&#160; &#160;0.132745 au&#160; &#160; &#160; 3.612 eV&#160; &#160; 29134.1 cm**-1 &lt;S**2&gt; =&#160; &#160;0.000000<br />&#160; &#160;139a -&gt; 142a&#160; :&#160; &#160; &#160;0.123433 (c=&#160; 0.35133024)<br />&#160; &#160;139a -&gt; 143a&#160; :&#160; &#160; &#160;0.221706 (c= -0.47085677)<br />&#160; &#160;139a -&gt; 144a&#160; :&#160; &#160; &#160;0.117215 (c=&#160; 0.34236621)<br />&#160; &#160;139a -&gt; 146a&#160; :&#160; &#160; &#160;0.039887 (c= -0.19971670)<br />&#160; &#160;140a -&gt; 142a&#160; :&#160; &#160; &#160;0.072587 (c= -0.26941893)<br />&#160; &#160;140a -&gt; 143a&#160; :&#160; &#160; &#160;0.269701 (c=&#160; 0.51932752)<br />&#160; &#160;140a -&gt; 144a&#160; :&#160; &#160; &#160;0.061824 (c= -0.24864433)<br />&#160; &#160;140a -&gt; 146a&#160; :&#160; &#160; &#160;0.039400 (c=&#160; 0.19849355)</p><p>STATE&#160; 4:&#160; E=&#160; &#160;0.133335 au&#160; &#160; &#160; 3.628 eV&#160; &#160; 29263.6 cm**-1 &lt;S**2&gt; =&#160; &#160;0.000000<br />&#160; &#160;137a -&gt; 145a&#160; :&#160; &#160; &#160;0.011128 (c=&#160; 0.10548751)<br />&#160; &#160;139a -&gt; 142a&#160; :&#160; &#160; &#160;0.086160 (c=&#160; 0.29353050)<br />&#160; &#160;139a -&gt; 143a&#160; :&#160; &#160; &#160;0.212033 (c=&#160; 0.46047060)<br />&#160; &#160;139a -&gt; 144a&#160; :&#160; &#160; &#160;0.140644 (c=&#160; 0.37502547)<br />&#160; &#160;140a -&gt; 142a&#160; :&#160; &#160; &#160;0.142376 (c=&#160; 0.37732800)<br />&#160; &#160;140a -&gt; 143a&#160; :&#160; &#160; &#160;0.156057 (c=&#160; 0.39504032)<br />&#160; &#160;140a -&gt; 144a&#160; :&#160; &#160; &#160;0.211858 (c=&#160; 0.46028051)</p><p>When I try to calculate the transition probabilities, it doesn&#039;t give back 100%. The system is a closed shell. Any suggestion? or can it be done in Multiwfn? I tried to plot the Uv-vis spectra and see the transitions by this.<br />Multiwfn sp.out &gt; 11 &gt; 3 &gt; 15 &gt; 0 &gt; 533.04910<br />What I get,<br /> Sum of absolute values of all transitions:&#160; &#160; &#160; &#160; &#160; &#160; 41.19493<br /> The individual terms are ranked by magnitude of contribution:<br />&#160; &#160;#Transition&#160; &#160; &#160;Contribution&#160; &#160; &#160; %<br />&#160; &#160; &#160; &#160; &#160;2&#160; &#160; &#160; &#160; &#160; &#160; 36.69845&#160; &#160; &#160;89.085<br />&#160; &#160; &#160; &#160; &#160;1&#160; &#160; &#160; &#160; &#160; &#160; &#160;4.34905&#160; &#160; &#160;10.557<br />&#160; &#160; &#160; &#160; &#160;3&#160; &#160; &#160; &#160; &#160; &#160; &#160;0.12731&#160; &#160; &#160; 0.309<br />&#160; &#160; &#160; &#160; &#160;7&#160; &#160; &#160; &#160; &#160; &#160; &#160;0.01532&#160; &#160; &#160; 0.037<br />&#160; &#160; &#160; &#160; &#160;4&#160; &#160; &#160; &#160; &#160; &#160; &#160;0.00242&#160; &#160; &#160; 0.006<br />&#160; &#160; &#160; &#160; &#160;8&#160; &#160; &#160; &#160; &#160; &#160; &#160;0.00215&#160; &#160; &#160; 0.005<br />&#160; &#160; &#160; &#160; &#160;6&#160; &#160; &#160; &#160; &#160; &#160; &#160;0.00015&#160; &#160; &#160; 0.000<br />&#160; &#160; &#160; &#160; &#160;5&#160; &#160; &#160; &#160; &#160; &#160; &#160;0.00007&#160; &#160; &#160; 0.000<br />&#160; &#160; &#160; &#160; &#160;9&#160; &#160; &#160; &#160; &#160; &#160; &#160;0.00000&#160; &#160; &#160; 0.000<br />&#160; &#160; &#160; &#160; 10&#160; &#160; &#160; &#160; &#160; &#160; &#160;0.00000&#160; &#160; &#160; 0.000</p><p>How does it calculate the transition percentage?</p>]]></description>
			<author><![CDATA[dummy@example.com (prasanta13)]]></author>
			<pubDate>Fri, 12 Aug 2022 07:33:11 +0000</pubDate>
			<guid>http://sobereva.com/wfnbbs/viewtopic.php?pid=2628#p2628</guid>
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