Two-photon absorption: Difference between revisions

From The Yambo Project
Jump to navigation Jump to search
No edit summary
No edit summary
Line 2: Line 2:




In this tutorial we will show how to calculate two-photon absorption in bulk silicon, following the approach descried in Ref. <ref name="tpa">[https://amu.hal.science/hal-01755879/document Two-photon absorption in two-dimensional materials: The case of hexagonal boron nitride] Claudio Attaccalite, Myrta Grüning, Hakim Amara, Sylvain Latil, and François Ducastelle Phys. Rev. B '''98''', 165126 (2018)  </ref>. In this tutorial we suppose you are already familiar with the non-linear response using the Yambo code. If it is not the case please study the previous tutorials: [[Linear response using Dynamical Berry Phase]]
In this tutorial we will show how to calculate two-photon absorption in bulk silicon, following the approach descried in Ref. <ref name="tpa">[https://amu.hal.science/hal-01755879/document Two-photon absorption in two-dimensional materials: The case of hexagonal boron nitride] Claudio Attaccalite, Myrta Grüning, Hakim Amara, Sylvain Latil, and François Ducastelle Phys. Rev. B '''98''', 165126 (2018)  </ref>. <br>In this tutorial we suppose you are already familiar with the non-linear response using the Yambo code. If it is not the case please study the previous tutorials: [[Linear response using Dynamical Berry Phase]] and [[Real time approach to non-linear response (SHG)]].


== References ==
== References ==

Revision as of 14:39, 26 March 2024


In this tutorial we will show how to calculate two-photon absorption in bulk silicon, following the approach descried in Ref. [1].
In this tutorial we suppose you are already familiar with the non-linear response using the Yambo code. If it is not the case please study the previous tutorials: Linear response using Dynamical Berry Phase and Real time approach to non-linear response (SHG).

References

  1. Two-photon absorption in two-dimensional materials: The case of hexagonal boron nitride Claudio Attaccalite, Myrta Grüning, Hakim Amara, Sylvain Latil, and François Ducastelle Phys. Rev. B 98, 165126 (2018)