Density Functional Theory in Chemical Physics: Time-dependent DFT, Ensembles and Thermal DFT
FOCUS · D39 · ID: 2154548
Presentations
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Simulating Attochemistry using Time-Dependent Density Functional Theory
ORAL · Invited
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Publication: L. Kurkowski, A. Sissay, M. Yang, and K. Lopata, "Probing attosecond band dynamics in diamond and silica with transient absorption spectroscopy", draft manuscript (2023).
Presenters
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Kenneth Lopata
- Louisiana State University
Authors
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Aderonke S Folorunso
- Louisiana State University
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Mengqi Yang
- Louisiana State University
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Lucas M Kurkowski
- Louisiana State Univeristy
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Francois Mauger
- Louisiana State University
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Kyle A Hamer
- Louisiana State University
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Denawakage D Jayasinghe
- Louisiana State University
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Mette B Gaarde
- LOUISIANA STATE UNIVERSITY
- Louisiana State University
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Kenneth J Schafer
- Louisiana State University
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Kenneth Lopata
- Louisiana State University
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Real time TDDFT study of electron induced chemical reactions in polymers
ORAL
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Presenters
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Xiuyao Lang
- University of Texas at Dallas
Authors
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Xiuyao Lang
- University of Texas at Dallas
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Roberto C Longo
- Tokyo Electron
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Peter L Ventzek
- Tokyo Electron
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Kyeongjae Cho
- University of Texas at Dallas
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Excitations and quasi-excitations in jellium, and excitations in quantum materials with linear response time dependent density functional theory
ORAL
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Presenters
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Adrienn Ruzsinszky
- Tulane University
Authors
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Adrienn Ruzsinszky
- Tulane University
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Optic property calculations of 1T-TiSe2 under CDW transition
ORAL
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Presenters
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Hong Tang
- Tulane University
Authors
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Hong Tang
- Tulane University
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Implementation of Time-dependent Hartree-Fock in the real-space Octopus code
ORAL
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Presenters
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Uday Panta
- University of California, Merced
Authors
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Uday Panta
- University of California, Merced
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David A Strubbe
- University of California, Merced
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Development of constrained multicomponent time-dependent density functional theory for incorporation of nuclear quantum effects in electronic excited state calculations
ORAL
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Presenters
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Yiwen Wang
- University of Wisconsin-Madison
Authors
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Yiwen Wang
- University of Wisconsin-Madison
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Yang Yang
- Wisconsin
- University of Wisconsin - Madison
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Photocatalytic water splitting from Koopmans spectral functionals: The case of $TiO_2$ polymorphs
ORAL
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Publication: M. Stojkovic , E. Linscott and N. Marzari " Photocatalytic water splitting from Koopmans spectral functionals: The case of $TiO_2$ polymorphs"
Presenters
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Marija R Stojkovic
- Ecole Polytechnique Federale de Lausanne
Authors
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Marija R Stojkovic
- Ecole Polytechnique Federale de Lausanne
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Edward Linscott
- Ecole Polytechnique Federale de Lausanne
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Nicola Marzari
- Ecole Polytechnique Federale de Lausanne
- THEOS, EPFL; NCCR MARVEL; LSM Paul Scherrer Insitut
- EPFL
- THEOS, EPFL; NCCR, MARVEL; LMS, Paul Scherrer Institut
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Adiabatic connections for exact and approximate thermal density functional theory
ORAL · Invited
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Presenters
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Aurora Pribram-Jones
- University of California, Merced
- University of CA, Merced
Authors
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Aurora Pribram-Jones
- University of California, Merced
- University of CA, Merced
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Using the generalized thermal adiabatic connection to analyze and build exchange-correlation free energy approximations
ORAL
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Presenters
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Brittany P Harding
- University of California, Merced
Authors
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Brittany P Harding
- University of California, Merced
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Zachary N Mauri
- Stanford University
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Vera Xie
- University of California, Merced
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Aurora Pribram-Jones
- University of California, Merced
- University of CA, Merced
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Exchange-correlation energy from model Green's functions: A unified formalism for Green's functions using density functional theory
ORAL
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Presenters
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Steven Crisostomo
- University of California, Irvine
Authors
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Steven Crisostomo
- University of California, Irvine
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E.K.U. Gross
- Hebrew University of Jerusalem
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Kieron Burke
- University of California, Irvine
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Perturbative ensemble density functional theory applied to charge transfer excitations
ORAL
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Presenters
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Gil Amoyal
- Weizmann Institute
Authors
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Tim Gould
- Griffith University
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Leeor Kronik
- Weizmann Institute of Science
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Gil Amoyal
- Weizmann Institute
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