Matter and Radiation at Extremes, Volume. 6, Issue 5, 054401(2021)
Observation of a highly conductive warm dense state of water with ultrafast pump–probe free-electron-laser measurements
[1] A.Barty, M.Beye, M. J.Bogan, S.Boutet, C.Caronna, C.Chen, D. P.DePonte, J.Feldkamp, C. Y.Hampton, C.Huang, H.Laksmono, N. D.Loh, A. V.Martin, T. A.McQueen, M.Messerschmidt, A.Nilsson, D.Nordlund, L. G. M.Pettersson, D.Schlesinger, M. M.Seibert, J. A.Sellberg, R. G.Sierra, L. B.Skinner, D.Starodub, T. M.Weiss, K. T.Wikfeldt, G. J.Williams. Ultrafast X-ray probing of water structure below the homogeneous ice nucleation temperature. Nature, 510, 381(2014).
[2] K.Amann-Winkel, T.Katayama, K. H.Kim, S.Kim, J. H.Lee, D.Mariedahl, K. H.Nam, A.Nilsson, J.Park, H.Pathak, F.Perakis, J. A.Sellberg, A.Sp?h. Maxima in the thermodynamic response and correlation functions of deeply supercooled water. Science, 358, 1589(2017).
[3] K.Amann-Winkel, S. H.Chun, T.Eklund, I.Eom, N.Giovambattista, S.Jeong, K. H.Kim, M.Kim, T. J.Lane, J. H.Lee, D.Mariedahl, A.Nilsson, M. L.Parada, J.Park, H.Pathak, F.Perakis, P. H.Poole, A.Sp?h, M.Weston, C.Yang, S.You. Experimental observation of the liquid-liquid transition in bulk supercooled water under pressure. Science, 370, 978(2020).
[4] M.Bonn, L.De Marco, Z. R.Kann, T. D.Kühne, Y.Nagata, F.Perakis, A.Shalit, F.Tang, R.Torre. Vibrational spectroscopy and dynamics of water. Chem. Rev., 116, 7590-7607(2016).
[5] X.Pang, H.-X.Zhou. Electrostatic interactions in protein structure, folding, binding, and condensation. Chem. Rev., 118, 1691-1741(2018).
[6] P.Marcus, V.Maurice. Progress in corrosion science at atomic and nanometric scales. Prog. Mater. Sci., 95, 132-171(2018).
[7] W. B.Hubbard. Interiors of the giant planets. Science, 214, 145-149(1981).
[8] M.French, T. R.Mattsson, N.Nettelmann, R.Redmer. The phase diagram of water and the magnetic fields of Uranus and Neptune. Icarus, 211, 798(2011).
[9] J.Bloxham, S.Stanley. Convective-region geometry as the cause of Uranus’ and Neptune’s unusual magnetic fields. Nature, 428, 151(2004).
[10] J.Bloxham, S.Stanley. Numerical dynamo models of Uranus’ and Neptune’s magnetic fields. Icarus, 184, 556(2006).
[11] T.D?ppner, R. W.Falcone, L. B.Fletcher, S.Frydrych, E.Galtier, E. J.Gamboa, D. O.Gericke, S. H.Glenzer, E.Granados, N. J.Hartley, D.Kraus, M. J.MacDonald, A. J.MacKinnon, E. E.McBride, I.Nam, P.Neumayer, A.Pak, M.Roth, A. M.Saunders, A. K.Schuster, P.Sun, T.van Driel, J.Vorberger. Formation of diamonds in laser-compressed hydrocarbons at planetary interior conditions. Nat. Astron., 1, 606(2017).
[12] M. H.Acu?a, K. W.Behannon, L. F.Burlaga, J. E. P.Connerney, R. P.Lepping, N. F.Ness, F. M.Neubauer. Magnetic fields at Uranus. Science, 233, 85-89(1986).
[13] M.French, T. R.Mattsson, N.Nettelmann, R.Redmer. Equation of state and phase diagram of water at ultrahigh pressures as in planetary interiors. Phys. Rev. B, 79, 054107(2009).
[14] H. K.Chung, L. B.Fletcher, E.Galtier, E. J.Gamboa, S. H.Glenzer, J.Hastings, H. J.Lee, Y.Omarbakiyeva, H.Reinholz, G.R?pke, P.Sperling, U.Zastrau. Free-electron x-ray laser measurements of collisional-damped plasmons in isochorically heated warm dense matter. Phys. Rev. Lett., 115, 115001(2015).
[15] L. B.Fletcher, E.Galtier, E.Gamboa, S. H.Glenzer, H. J.Lee, R.Redmer, P.Sperling, B. B. L.Witte, U.Zastrau. Warm dense matter demonstrating non-drude conductivity from observations of nonlinear plasmon damping. Phys. Rev. Lett., 118, 225001(2017).
[16] M.French, S. H.Glenzer, P.Neumayer, V.Recoules, R.Redmer, G.R?pke, P.Sperling, B. B. L.Witte. Comment on “Isochoric, isobaric, and ultrafast conductivities of aluminum, lithium, and carbon in the warm dense matter regime”. Phys. Rev. E, 99, 047201(2019).
[17] T.D?ppner, R. W.Falcone, L. B.Fletcher, S.Frydrych, E.Galtier, E. J.Gamboa, D. O.Gericke, S. H.Glenzer, E.Granados, N. J.Hartley, D.Kraus, M. J.MacDonald, A. J.MacKinnon, E. E.McBride, I.Nam, P.Neumayer, A.Pak, K.Ramakrishna, M.Roth, A. M.Saunders, A. K.Schuster, P.Sun, T.van Driel, K.Voigt, J.Vorberger. Demonstration of X-ray Thomson scattering as diagnostics for miscibility in warm dense matter. Nat. Commun., 11, 2620(2020).
[18] D.Batani, L. R.Benedetti, A.Benuzzi-Mounaix, D. K.Bradley, P. M.Celliers, G. W.Collins, L. B.Da Silva, N.Dague, C.Danson, J. H.Eggert, E.Henry, D. G.Hicks, R.Jeanloz, M.Koenig, K. K. M.Lee, B.Marchet, I.Masclet, S. J.Moon, D.Neely, J.Pasley, M.Rabec Le Gloahec, C.Reverdin, R. J.Wallace, O.Willi. Electronic conduction in shock-compressed water. Phys. Plasmas, 11, L41(2004).
[19] M. P.Desjarlais, M.French, M. D.Knudson, R. W.Lemke, T. R.Mattsson, N.Nettelmann, R.Redmer. Probing the interiors of the ice giants: Shock compression of water to 700 GPa and 3.8 g/cm3. Phys. Rev. Lett., 108, 091102(2012).
[20] T.Kakeshita, T.Kimura, R.Kodama, K.Miyanishi, T.Okuchi, N.Ozaki, Y.Sakawa, T.Sano, T.Sano, K.Shimizu, T.Terai.
[21] P. M.Celliers, G. W.Collins, F.Coppari, J. H.Eggert, D. E.Fratanduono, S.Hamel, R.Jeanloz, M.Millot, J. R.Rygg, D. C.Swift. Experimental evidence for superionic water ice using shock compression. Nat. Phys., 14, 297(2018).
[22] A. L.Aquila, S.Botha, S.Boutet, S. A. H.Guillet, K. L.Gumerlock, M. J.Hayes, J. E.Koglin, H.Laksmono, T. J.Lane, M.Liang, T. A.McQueen, M.Messerschmidt, D.Milathianaki, K.Nass, J. S.Robinson, I.Schlichting, R. L.Shoeman, R. G.Sierra, C. A.Stan, H. A.Stone, G. J.Williams, P. R.Willmott. Liquid explosions induced by X-ray laser pulses. Nat. Phys., 12, 966(2016).
[23] R.Alonso-Mori, B.Barbrel, S. B.Brown, D. A.Chapman, Z.Chen, C. B.Curry, F.Fiuza, L. B.Fletcher, A.Fry, E.Galtier, E.Gamboa, M.Gauthier, D. O.Gericke, A.Gleason, S. H.Glenzer, S.Goede, E.Granados, J. B.Hasting, P.Heimann, J.Kim, D.Kraus, H. J.Lee, M. J.MacDonald, A. J.MacKinnon, R.Mishra, B.Nagler, A.Ravasio, C.Roedel, W.Schumaker, P.Sperling, Y. Y.Tsui, J.Vorberger, W. E.White, U.Zastrau. Matter under extreme conditions experiments at the Linac Coherent Light Source. J. Phys. B: At., Mol. Opt. Phys., 49, 092001(2016).
[24] E.Biasin, M.Centurion, Z.Chen, A. A.Cordones, C.Crissman, D. P.Deponte, S. H.Glenzer, K.Ledbetter, M.-F.Lin, M.Mo, J. P. F.Nunes, C. D.Rankine, X.Shen, X.Wang, T. J. A.Wolf, J.Yang. Structure retrieval in liquid-phase electron scattering. Phys. Chem. Chem. Phys, 23, 1308(2020).
[25] J.Andreasson, A.Barty, J.Bielecki, C.Bostedt, P.Bruza, M.Bucher, S.Carron, H. N.Chapman, B. J.Daurer, T.Ekeberg, G.Faigel, K.Ferguson, T.Gorkhover, J.Hajdu, M. F.Hantke, D.Hasse, J.Krzywinski, D. S. D.Larsson, F. R. N. C.Maia, T.M?ller, A.Morgan, K.Mühlig, M.Müller, C.Nettelblad, K.Okamoto, A.Pietrini, D.Rupp, M.Sauppe, M.Seibert, J. A.Sellberg, M.Svenda, M.Swiggers, N.Timneanu, A.Ulmer, G.Van Der Schot, D.Westphal, G.Williams, A.Zani. Femtosecond X-ray Fourier holography imaging of free-flying nanoparticles. Nat. Photonics, 12, 150(2018).
[26] N. W.Ashcroft, N. D.Mermin. Solid State Physics(1976).
[27] R.Alonso-Mori, A.Aquila, S.Bajt, A.Barty, R.Bean, K. R.Beyerlein, S.Boutet, C.Caleman, H. N.Chapman, S.Hau-Riege, H. O.J?nsson, J. E.Koglin, M.Messerschmidt, D.Ragazzon, D.Sokaras, N.T?mneanu, G. J.Williams. Ultrafast nonthermal heating of water initiated by an X-ray free-electron laser. Proc. Natl. Acad. Sci. U. S. A., 115, 5652(2018).
[28] Z.Chen, S.Hansen, A.Ng, V.Recoules, P.Sterne, Y. Y.Tsui, B.Wilson. dc conductivity of two-temperature warm dense gold. Phys. Rev. E, 94, 033213(2016).
[29] Z.Chen, B.Holst, S. E.Kirkwood, A.Ng, V.Recoules, M.Reid, V.Sametoglu, Y. Y.Tsui. Evolution of ac conductivity in nonequilibrium warm dense gold. Phys. Rev. Lett., 110, 135001(2013).
[30] T.Ao, A. D. Ellis, M. E.Foord, A.Ng, D. F.Price, P. T.Springer, K.Widmann. Single-state measurement of electrical conductivity of warm dense gold. Phys. Rev. Lett., 92, 125002(2004).
[31] H. A.Bechtel, P.Br??a, Z.Chen, A. A.Cordones, C. B.Curry, D. P.DePonte, S. H.Glenzer, J. F.Kern, J. B.Kim, J. D.Koralek, S. P.Moeller, P.Sperling, S.Toleikis. Generation and characterization of ultrathin free-flowing liquid sheets. Nat. Commun., 9, 1353(2018).
[32] A. C.LaForge, J.Med, R.Michiels, P.Slaví?ek, F.Stienkemeier, V.Svoboda, H. J.W?rner. Real-time observation of water radiolysis and hydrated electron formation induced by extreme-ultraviolet pulses. Sci. Adv., 6, eaaz0385(2020).
[33] R. A.Matula. Electrical resistivity of copper, gold, palladium, and silver. J. Phys. Chem. Ref. Data, 8, 1147(1979).
[34] J. M.Ziman. A theory of the electrical properties of liquid metals. I: The monovalent metals. Philos. Mag., 6, 1013(1961).
[35] M.Born, E.Wolf. Principles of Optics(1980).
[36] A.Azima, L.Bittner, S.Bonfigt, K.Tiedtke, N.von Bargen. The soft x-ray free-electron laser FLASH at DESY: Beamlines, diagnostics and end-stations. New J. Phys., 11, 023029(2009).
[37] J. C.Davis, E. M.Gullikson, B. L.Henke. X-ray interactions: Photoabsorption, scattering, transmission, and reflection at
[38] I.Abril, D.Emfietzoglou, R.Garcia-Molina, I.Kyriakou. Inelastic scattering and energy loss of swift electron beams in biologically relevant materials. Surf. Interface Anal., 49, 11(2017).
[39] A.Becker, T.Bornath, R.Bredow, T.D?ppner, S.Dziarzhytski, T.Fennel, L. B.Fletcher, E.F?rster, C.Fortmann, S. H.Glenzer, S.G?de, G.Gregori, M.Harmand, V.Hilbert, B.Holst, T.Laarmann, H. J.Lee, T.Ma, J. P.Mithen, R.Mitzner, C. D.Murphy, M.Nakatsutsumi, P.Neumayer, A.Przystawik, R.Redmer, S.Roling, M.Schulz, B.Siemer, S.Skruszewicz, P.Sperling, J.Tiggesb?umker, S.Toleikis, T.Tschentscher, T.White, M.W?stmann, H.Zacharias, U.Zastrau. Equilibration dynamics and conductivity of warm dense hydrogen. Phys. Rev. E, 90, 013104(2014).
[40] A.Becker, T.Bornath, R.Bredow, T.D?ppner, S.Dziarzhytski, T.Fennel, L. B.Fletcher, E.F?rster, S. H.Glenzer, S.G?de, G.Gregori, M.Harmand, V.Hilbert, D.Hochhaus, B.Holst, T.Laarmann, H. J.Lee, T.Ma, J. P.Mithen, R.Mitzner, C. D.Murphy, M.Nakatsutsumi, P.Neumayer, A.Przystawik, R.Redmer, S.Roling, M.Schulz, B.Siemer, S.Skruszewicz, P.Sperling, J.Tiggesb?umker, S.Toleikis, T.Tschentscher, T.White, M.W?stmann, H.Zacharias, U.Zastrau. Resolving ultrafast heating of dense cryogenic hydrogen. Phys. Rev. Lett., 112, 105002(2014).
[41] U.Samir, N. H.Stone, K. H.Wright. The expansion of a plasma into a vacuum: Basic phenomena and processes and applications to space plasma physics. Rev. Geophys., 21, 1631(1983).
[42] Z.Chen, S. H.Glenzer, P.Hering, M.Mo, A.Ng, V.Recoules, L.Soulard, Y. Y.Tsui. Interatomic potential in the nonequilibrium warm dense matter regime. Phys. Rev. Lett., 121, 075002(2018).
[43] W. H.Southwell. Gradient-index antireflection coatings. Opt. Lett., 8, 584(1984).
[44] S.Eliezer, D.Fisher, M.Fraenkel, Z.Henis, E.Moshe. Interband and intraband (drude) contributions to femtosecond laser absorption in aluminum. Phys. Rev. E, 65, 016409(2001).
[45] M.French, R.Redmer. Electronic transport in partially ionized water plasmas. Phys. Plasmas, 24, 092306(2017).
[46] M. P.Desjarlais, R.Scipioni, L.Stixrude. Electrical conductivity of SiO2 at extreme conditions and planetary dynamos. Proc. Natl. Acad. Sci. U. S. A., 114, 9009(2017).
[47] J.Hafner, G.Kresse.
[48] J.Hafner, G.Kresse.
[49] J.Hafner, G.Kresse.
[50] J.Furthmüller, G.Kresse. Efficient iterative schemes for
[51] K.Burke, M.Ernzerhof, J. P.Perdew. Generalized gradient approximation made simple. Phys. Rev. Lett., 77, 3865-3868(1996).
[52] M.French, T. R.Mattsson, R.Redmer. Diffusion and electrical conductivity in water at ultrahigh pressures. Phys. Rev. B, 82, 174108(2010).
[53] F.Bechstedt, J.Furthmüller, M.Gajdo?, K.Hummer, G.Kresse. Linear optical properties in the projector-augmented wave methodology. Phys. Rev. B, 73, 045112(2006).
[54] R.Kubo. Statistical-mechanical theory of irreversible processes. I. General theory and simple applications to magnetic and conduction problems. J. Phys. Soc. Jpn., 12, 570(1957).
[55] D. A.Greenwood. The Boltzmann equation in the theory of electrical conduction in metals. Proc. Phys. Soc., 71, 585-596(1958).
[56] M.Ernzerhof, J.Heyd, G. E.Scuseria. Erratum: “Hybrid functionals based on a screened Coulomb potential” [J. Chem. Phys.
[57] M.French, R.Redmer. Optical properties of water at high temperature. Phys. Plasmas, 18, 043301(2011).
[58] A.Benuzzi-Mounaix, M.Bethkenhagen, F.Datchi, M.French, M.Guarguaglini, J.-A.Hernandez, F.Lefevre, S.Ninet, A.Ravasio, R.Redmer, T.Vinci. Metallization of shock-compressed liquid ammonia. Phys. Rev. Lett., 126, 025003(2020).
[59] B.Holst, S.Kirkwood, S.Mazevet, A.Ng, V.Recoules, M.Reid, V.Sametoglu, M.Torrent, Y. Y.Tsui.
[60] W.-D.Kraeft, D.Kremp, M.Schlanges. Quantum Statistics of Nonideal Plasmas(2005).
[61] S. H.Glenzer, R.Redmer. X-ray Thomson scattering in high energy density plasmas. Rev. Mod. Phys., 81, 1625(2009).
[62] J. L. F.Abascal, C.Vega. A general purpose model for the condensed phases of water: TIP4P/2005. J. Chem. Phys., 123, 234505(2005).
[63] R. M.Glaeser, T.Head-Gordon, G.Hura, J. M.Sorenson. High-quality x-ray scattering experiment on liquid water at ambient conditions. J. Chem. Phys., 113, 9140(2000).
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Z. Chen, X. Na, C. B. Curry, S. Liang, M. French, A. Descamps, D. P. DePonte, J. D. Koralek, J. B. Kim, S. Lebovitz, M. Nakatsutsumi, B. K. Ofori-Okai, R. Redmer, C. Roedel, M. Schörner, S. Skruszewicz, P. Sperling, S. Toleikis, M. Z. Mo, S. H. Glenzer. Observation of a highly conductive warm dense state of water with ultrafast pump–probe free-electron-laser measurements[J]. Matter and Radiation at Extremes, 2021, 6(5): 054401
Category: Fundamental Physics At Extreme Light
Received: Jan. 11, 2021
Accepted: Jun. 23, 2021
Published Online: Oct. 19, 2021
The Author Email: Chen Z. (zchen@slac.stanford.edu)