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Accurate knowledge of the properties of hydrogen at high compression is crucial for astrophysics (e.g.
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Z. A. Moldabekov, T. Dornheim, G. Gregori, F. Graziani, M. Bonitz, and A. Cangi, “Towards a Quantum Fluid Theory of Correlated Many-Fermion Systems from First Principles,” SciPost Phys. 12
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J. R. Rygg, P. M. Celliers, and G. W. Collins, “Specific heat of electron plasma waves,” Phys. Rev. Lett. 130
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Hongwei Niu, Yubo Yang, Scott Jensen, Markus Holzmann, Carlo Pierleoni, and David M. Ceperley, “Stable solid molecular hydrogen above 900k from a machine-learned potential trained with diffusion quantum monte carlo,” Physical Review Letters 130
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Fedor Akhmetov, Igor Milov, Igor A. Makhotkin, Marcelo Ackermann, and Jan Vorberger, “Electron-phonon coupling in transition metals beyond wang’s approximation,” Phys. Rev. B 108
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Thomas W. Hentschel, Alina Kononov, Alexandra Olmstead, Attila Cangi, Andrew D. Baczewski, and Stephanie B. Hansen, “Improving dynamic collision frequencies: Impacts on dynamic structure factors and stopping powers in warm dense matter,” Physics of Plasmas 30
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R. M. N. Goshadze, Valentin V. Karasiev, D. I. Mihaylov, and S. X. Hu, “Shock-induced metallization of polystyrene along the principal hugoniot investigated by advanced thermal density functionals,” Phys. Rev. B 107
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Max Wilson, Saverio Moroni, Markus Holzmann, Nicholas Gao, Filip Wudarski, Tejs Vegge, and Arghya Bhowmik, “Neural network ansatz for periodic wave functions and the homogeneous electron gas,” Phys. Rev. B 107
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Erik Schroedter and Michael Bonitz, “Two-time Quantum Fluctuations Approach and its relation to the Bethe-Salpeter equation,” submitted to phys. stat. sol. (b) (2023)
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Erik Schroedter, Björn Wurst, Jan-Philip Joost, and Michael Bonitz, “Quantum Fluctuations Approach to the Nonequilibrium G W GW -Approximation: Density Correlations and Dynamic Structure Factor,” Phys. Rev. B 108
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J. P. Sauppe, Y. Lu, P. Tzeferacos, A. C. Reyes, S. Palaniyappan, K. A. Flippo, S. Li, and J. L. Kline, “On the importance of three-dimensional modeling for high-energy-density physics experiments,” Phys. Plasmas 30
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D. Ranjan, K. Ramakrishna, K. Voigt, O. S. Humphries, B. Heuser, M. G. Stevenson, J. Lütgert, Z. He, C. Qu, S. Schumacher, P. T. May, A. Amouretti, K. Appel, E. Brambrink, V. Cerantola, D. Chekrygina, L. B. Fletcher, S. Göde, M. Harmand, N. J. Hartley, S. P. Hau-Riege, M. Makita, A. Pelka, A. K. Schuster, M. Šmíd, T. Toncian, M. Zhang, T. R. Preston, U. Zastrau, J. Vorberger, and D. Kraus, “Toward using collective x-ray Thomson scattering to study C–H demixing and hydrogen metallization in warm dense matter conditions,” Physics of Plasmas 30
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M. J. MacDonald, C. A. Di Stefano, T. Döppner, L. B. Fletcher, K. A. Flippo, D. Kalantar, E. C. Merritt, S. J. Ali, P. M. Celliers, R. Heredia, S. Vonhof, G. W. Collins, J. A. Gaffney, D. O. Gericke, S. H. Glenzer, D. Kraus, A. M. Saunders, D. W. Schmidt, C. T. Wilson, R. Zacharias, and R. W. Falcone, “The colliding planar shocks platform to study warm dense matter at the National Ignition Facility,” Physics of Plasmas 30
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Mandy Bethkenhagen, Abhiraj Sharma, Phanish Suryanarayana, John E. Pask, Babak Sadigh, and Sebastien Hamel, “Properties of carbon up to 10 million kelvin from kohn-sham density functional theory molecular dynamics,” Phys. Rev. E 107
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Long Yang, Lingen Huang, Stefan Assenbaum, Thomas E. Cowan, Ilja Goethel, Sebastian Göde, Thomas Kluge, Martin Rehwald, Xiayun Pan, Ulrich Schramm, Jan Vorberger, Karl Zeil, Tim Ziegler, and Constantin Bernert, “Time-resolved optical shadowgraphy of solid hydrogen jets as a testbed to benchmark particle-in-cell simulations,” Communications Physics 6
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O. A. Hurricane, D. A. Callahan, D. T. Casey, A. R. Christopherson, A. L. Kritcher, O. L. Landen, S. A. Maclaren, R. Nora, P. K. Patel, J. Ralph, D. Schlossberg, P. T. Springer, C. V. Young, and A. B. Zylstra, “Energy principles of scientific breakeven in an inertial fusion experiment,” Phys. Rev. Lett. 132
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A. Pak, A. B. Zylstra, K. L. Baker, D. T. Casey, E. Dewald, L. Divol, M. Hohenberger, A. S. Moore, J. E. Ralph, D. J. Schlossberg, R. Tommasini, N. Aybar, B. Bachmann, R. M. Bionta, D. Fittinghoff, M. Gatu Johnson, H. Geppert Kleinrath, V. Geppert Kleinrath, K. D. Hahn, M. S. Rubery, O. L. Landen, J. D. Moody, L. Aghaian, A. Allen, S. H. Baxamusa, S. D. Bhandarkar, J. Biener, N. W. Birge, T. Braun, T. M. Briggs, C. Choate, D. S. Clark, J. W. Crippen, C. Danly, T. Döppner, M. Durocher, M. Erickson, T. Fehrenbach, M. Freeman, M. Havre, S. Hayes, T. Hilsabeck, J. P. Holder, K. D. Humbird, O. A. Hurricane, N. Izumi, S. M. Kerr, S. F. Khan, Y. H. Kim, C. Kong, J. Jeet, B. Kozioziemski, A. L. Kritcher, K. M. Lamb, N. C. Lemos, B. J. MacGowan, A. J. Mackinnon, A. G. MacPhee, E. V. Marley, K. Meaney, M. Millot, J.-M. G. Di Nicola, A. Nikroo, R. Nora, M. Ratledge, J. S. Ross, S. J. Shin, V. A. Smalyuk, M. Stadermann, S. Stoupin, T. Suratwala, C. Trosseille, B. Van Wonterghem, C. R. Weber, C. Wild, C. Wilde, P. T. Wooddy, B. N. Woodworth, and C. V. Young, “Observations and properties of the first laboratory fusion experiment to exceed a target gain of unity,” Phys. Rev. E 109
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Jan Vorberger, Thomas R. Preston, Nikita Medvedev, Maximilian P. Böhme, Zhandos A. Moldabekov, Dominik Kraus, and Tobias Dornheim, “Revealing non-equilibrium and relaxation in laser heated matter,” Physics Letters A 499
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Deyan I. Mihaylov, S.X. Hu, and Valentin V. Karasiev, “Dragon: A multi-gpu orbital-free density functional theory molecular dynamics simulation package for modeling of warm dense matter,” Computer Physics Communications 294
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Tao Chen, Qianrui Liu, Yu Liu, Liang Sun, and Mohan Chen, “Combining stochastic density functional theory with deep potential molecular dynamics to study warm dense matter,” Matter and Radiation at Extremes 9
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David M Ceperley, Scott Jensen, Yubo Yang, Hongwei Niu, Carlo Pierleoni, and Markus Holzmann, “Training models using forces computed by stochastic electronic structure methods,” Electronic Structure 6
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Erik Schroedter and Michael Bonitz, “Classical and Quantum Theory of Fluctuations for Many-Particle Systems out of Equilibrium,” Contrib. Plasma Phys. (2024)
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Lucas J. Stanek, Alina Kononov, Stephanie B. Hansen, Brian M. Haines, S. X. Hu, Patrick F. Knapp, Michael S. Murillo, Liam G. Stanton, Heather D. Whitley, Scott D. Baalrud, Lucas J. Babati, Andrew D. Baczewski, Mandy Bethkenhagen, Augustin Blanchet, III Clay, Raymond C., Kyle R. Cochrane, Lee A. Collins, Amanda Dumi, Gerald Faussurier, Martin French, Zachary A. Johnson, Valentin V. Karasiev, Shashikant Kumar, Meghan K. Lentz, Cody A. Melton, Katarina A. Nichols, George M. Petrov, Vanina Recoules, Ronald Redmer, Gerd Röpke, Maximilian Schörner, Nathaniel R. Shaffer, Vidushi Sharma, Luciano G. Silvestri, François Soubiran, Phanish Suryanarayana, Mikael Tacu, Joshua P. Townsend, and Alexander J. White, “Review of the second charged-particle transport coefficient code comparison workshop,” Physics of Plasmas 31
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Thomas G. White, Hannah Poole, Emma E. McBride, Matthew Oliver, Adrien Descamps, Luke B. Fletcher, W. Alex Angermeier, Cameron H. Allen, Karen Appel, Florian P. Condamine, Chandra B. Curry, Francesco Dallari, Stefan Funk, Eric Galtier, Eliseo J. Gamboa, Maxence Gauthier, Peter Graham, Sebastian Goede, Daniel Haden, Jongjin B. Kim, Hae Ja Lee, Benjamin K. Ofori-Okai, Scott Richardson, Alex Rigby, Christopher Schoenwaelder, Peihao Sun, Bastian L. Witte, Thomas Tschentscher, Ulf Zastrau, Bob Nagler, J. B. Hastings, Giulio Monaco, Dirk O. Gericke, Siegfried H. Glenzer, and Gianluca Gregori, “Speed of sound in methane under conditions of planetary interiors,” Phys. Rev. Res. 6
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