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Published on: August 22, 2018
Comment on: "Toward Accurate Two-Photon Absorption Spectrum Simulations: Exploring the Landscape beyond the
Robin Grotjahn1, Filipp Furche1
1Department of Chemistry, University of California, Irvine, 1102 Natural Sciences II, Irvine, California 92697-2025, United States.
A recent study on two-photon absorption (2PA) strengths using meta-generalized gradient approximation (MGGA) functionals is flawed. It uses an incorrect method and overlooks prior work, leading to inaccurate results for optical properties.
Area of Science:
- Computational Chemistry
- Quantum Chemistry
- Theoretical Chemistry
Background:
- Two-photon absorption (2PA) is a crucial photophysical process.
- Meta-generalized gradient approximation (MGGA) functionals are increasingly used for electronic property calculations.
- Accurate calculation of 2PA strengths is vital for materials science and spectroscopy.
Purpose of the Study:
- To critically evaluate a recent benchmark study (ALRNZ24) on 2PA strengths using MGGA functionals.
- To highlight inaccuracies and methodological flaws in the ALRNZ24 study.
- To recommend appropriate theoretical approaches for calculating optical and magnetic response properties.
Main Methods:
- Review and critique of the methodology employed in the ALRNZ24 study.
- Comparison with previously published benchmark studies on 2PA.
- Analysis of the gauge-dependence of MGGA response theory.
Main Results:
- The ALRNZ24 study misrepresents the current state of 2PA benchmark calculations.
- The gauge-variant MGGA response theory used in ALRNZ24 yields erratic results for specific systems.
- ALRNZ24 failed to acknowledge a prior assessment of the same benchmark.
Conclusions:
- The application of MGGAs to optical and magnetic properties requires gauge-invariant formulations.
- Paramagnetic current-dependent MGGAs are recommended for accurate response property calculations.
- The findings necessitate a re-evaluation of MGGA-based 2PA strength predictions.
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