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\begin{etaremune}
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\item
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\href{https://arxiv.org/pdf/2310.19768.pdf}{Heptazine, cyclazine, and related compounds: chemically-accurate estimates of the inverted singlet-triplet gap},\\
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\textbf{P. F. Loos}, F. Lipparini, and D. Jacquemin*,\\
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\textit{J. Phys. Chem. Lett.} (submitted).
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\item
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\href{https://arxiv.org/pdf/2309.17311.pdf}{Reference vertical excitation energies for transition metal compounds},\\
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D. Jacquemin*, F. Kossoski, F. Gam, M. Boggio-Pasqua*, and \textbf{P. F. Loos*},\\
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\textit{J. Chem. Theory Comput.} (in press).
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\item
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\href{https://arxiv.org/pdf/2309.04167.pdf}{The three channels of many-body perturbation theory: GW, particle-particle, and electron-hole T-matrix self-energies},\\
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R. Orlando, P. Romaniello*, and \textbf{P. F. Loos*},\\
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\textit{J. Chem. Phys.} (in press).
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\item
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\href{https://arxiv.org/pdf/2308.14890.pdf}{QCMATH: Mathematica modules for electronic structure calculations},\\
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E. Monino, A. Marie, and \textbf{P. F. Loos*},\\
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\textit{arXiv}, 2308.14890 [physics.chem-p] (2023).
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\item
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\href{https://arxiv.org/pdf/2308.14618.pdf}{Seniority and hierarchy configuration interaction for radicals and excited states},\\
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F. Kossoski* and \textbf{P. F. Loos*},\\
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\textit{J. Chem. Theory Comput.} (in press).
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\item
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\href{https://pfloos.github.io/WEB_LOOS/pub/128.pdf}{Introduction to the Peter M. W. Gill special issue},\\
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M. Head-Gordon, A. T. B. Gilbert, P. F. Loos, and Leo Radom,\\
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M. Head-Gordon, A. T. B. Gilbert, \textbf{P. F. Loos}, and Leo Radom,\\
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\textit{Mol. Phys.}, \textbf{2023}, \textit{121}, e2219934.
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\item
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\href{https://arxiv.org/pdf/2306.01573.pdf}{Equation generator for equation-of-motion coupled cluster assisted by computer algebra system},\\
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\href{https://www.irsamc.ups-tlse.fr/loos/pub/127.pdf}{Equation generator for equation-of-motion coupled cluster assisted by computer algebra system},\\
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R. Quintero-Monsebaiz and \textbf{P. F. Loos*},\\
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\textit{J. Chem. Phys.}, \textbf{2023}, (submitted).
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\textit{AIP Adv.}, \textbf{2023}, \textit{13}, 085035.
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\item
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\href{https://www.irsamc.ups-tlse.fr/loos/pub/126.pdf}{Connections and performances of Green’s function methods for charged and neutral excitations},\\
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@ -53,9 +80,9 @@
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\textit{J. Chem. Phys.}, \textbf{2023}, \textit{159}, 034105.
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\item
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\href{https://arxiv.org/pdf/2303.15084.pdf}{Exact excited-state functionals of the asymmetric Hubbard dimer},\\
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\href{https://www.irsamc.ups-tlse.fr/loos/pub/125.pdf}{Exact excited-state functionals of the asymmetric Hubbard dimer},\\
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S. Giarrusso and \textbf{P. F. Loos*},\\
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\textit{Phys. Rev. Lett.}, \textbf{2023}, (submitted).
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\textit{J. Phys. Chem. Lett.}, \textbf{2023}, \textit{14}, 8780.
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\item
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\href{https://www.irsamc.ups-tlse.fr/loos/pub/124.pdf}{A similarity renormalization group approach to Green’s function methods},\\
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@ -65,7 +92,7 @@
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\item
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\href{https://www.irsamc.ups-tlse.fr/loos/pub/123.pdf}{Exploring new exchange-correlation kernels in the Bethe-Salpeter equation: a study of the asymmetric Hubbard dimer},\\
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R. Orlando, P. Romaniello, and \textbf{P. F. Loos*},\\
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\textit{Adv. Quantum Chem.}, \textbf{2023}, \textit{} (in press).
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\textit{Adv. Quantum Chem.}, \textbf{2023}, \textit{88}, 183.
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\item
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\href{https://www.irsamc.ups-tlse.fr/loos/pub/122.pdf}{Ground- and excited-state dipole moments and oscillator strengths of full configuration interaction quality},\\
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@ -75,7 +102,7 @@
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\item
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\href{https://www.irsamc.ups-tlse.fr/loos/pub/121.pdf}{State-specific configuration interaction for excited states},\\
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F. Kossoski* and \textbf{P. F. Loos*},\\
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\textit{J. Chem. Theory Comput.}, \textbf{2022}, \textit{} (submitted).
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\textit{J. Chem. Theory Comput.}, \textbf{2022}, \textit{19} 2258.
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\item
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\href{https://www.irsamc.ups-tlse.fr/loos/pub/120.pdf}{Diffusion Monte Carlo using domains in configuration space},\\
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@ -5,6 +5,8 @@
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\usepackage{amsmath,amsfonts,amssymb,bm,microtype,graphicx,wrapfig,geometry,physics,eurosym,multirow,xcolor,fullpage}
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\usepackage{hyperref}
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\urlstyle{same}
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\hypersetup{
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colorlinks=true,
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linkcolor=cyan,
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@ -13,6 +15,8 @@
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citecolor=purple
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}
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\usepackage{fullpage}
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\definecolor{darkgreen}{RGB}{0, 180, 0}
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\definecolor{fooblue}{RGB}{0,153,255}
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\definecolor{fooyellow}{RGB}{234,187,0}
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