Fantastic Dimensions: Difference between revisions
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== TDDFT vs Bethe-Salpeter equation: ALDA and long range kernels in 0,1,2 and 3 dimensions == | |||
This tutorial describes how to calculate the optical properties of 0/1/2 and 3 dimensional systems in the BS/TDDFT framework. | This tutorial describes how to calculate the optical properties of 0/1/2 and 3 dimensional systems in the BS/TDDFT framework. | ||
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Before starting the detailed description of the different tutorial examples please read the general remarks about [[runing_yambo|running yambo]] in the main documentation page. | Before starting the detailed description of the different tutorial examples please read the general remarks about [[runing_yambo|running yambo]] in the main documentation page. | ||
== Systems == | |||
{| class="wikitable" border="1" | {| class="wikitable" border="1" | ||
|- | |- | ||
| [[LiF|[[File: | | [[File:Lif jap.jpg|x300px|LiF|link=LiF]] | ||
| [[File:si_surf.jpg|x300px|Si Surface|link=Si Surface]] | |||
|- | |- | ||
| [[File:si_wire-3.gif|x100px|Si Wire|link=Si Wire]] | |||
| [[File:h2_molecule.gif|x100px|H<sub>2</sub> molecule|link=H2 molecule]] | |||
H<sub>2</sub> molecule | |||
| | |||
|} | |} |
Latest revision as of 06:25, 24 October 2019
TDDFT vs Bethe-Salpeter equation: ALDA and long range kernels in 0,1,2 and 3 dimensions
This tutorial describes how to calculate the optical properties of 0/1/2 and 3 dimensional systems in the BS/TDDFT framework.
Before starting the detailed description of the different tutorial examples please read the general remarks about running yambo in the main documentation page.