[20] N. Huse, H. Cho, K. Hong, L. Jamula, F. M. de Groot, T. K. Kim, J. K. McCusker, and R. W. Schoenlein, “Femtosecond Soft X-ray Spectroscopy of Solvated Transition Metal Complexes: Deciphering the Interplay of Electronic and Structural Dynamics,” J. Phys. Chem. Lett. 2, 880-884 (2011).
[19] N. Huse, T. K. Kim, L. Jamula, J. K. McCusker, F. M. de Groot, and R. W. Schoenlein, “Photo-Induced Spin-State Conversion in Solvated Transition Metal Complexes Probed via Time-Resolved Soft X-ray Spectroscopy,” J. Am. Chem. Soc. 132, 6809-6816 (2010).
[18] H. Wen*, N. Huse*, R. W. Schoenlein, and A. M. Lindenberg, “Ultrafast conversions between hydrogen bonded structures in liquid water observed by femtosecond x-ray spectroscopy,” J. Chem. Phys. 131, 234505 (2009).
[17] P. B. Hillyard, S. V. N. T. Kuchibhatla, T. E. Glover, P. A. Heimann, M. P. Hertlein, N. Huse, P. Nachimuthu, L. V. Saraf, R. W. Schoenlein, S. Thevuthasan, and K. J. Gaffney, “Atomic resolution mapping of the excited-state electronic structure of Cu2O with time-resolved x-ray absorption spectroscopy,” Phys. Rev. B 80, 125210 (2009).
[16] N. Huse, H. Wen, D. Nordlund, E. Szilagyi, D. Daranciang, T. A. Miller, A. Nilsson, R. W. Schoenlein, and A. M. Lindenberg, “Probing the hydrogen-bond network of water via time-resolved soft x-ray spectroscopy,” Phys. Chem. Chem. Phys. 11, 3951-3957 (2009).
[15] D. Kraemer, M. L. Cowan, A. Paarmann, N. Huse, E. T. J. Nibbering, T. Elsaesser, and R. J. D. Miller, “Temperature dependence of the two-dimensional infrared spectrum of liquid H2O,” Proc. Nat. Acad. Sci. 105, 437-442 (2008).
[14] T. Elsaesser, N. Huse, J. Dreyer, J. R. Dwyer, K. Heyne, and E. T. Nibbering, “Ultrafast vibrational dynamics and anharmonic couplings of hydrogen-bonded dimers in solution,” Chemical Physics 341, 175-188 (2007).
[13] N. Huse, Multidimensional Vibrational Spectroscopy of Hydrogen-Bonded Systems in the Liquid Phase: Coupling Mechanisms and Structural Dynamics (Mensch & Buch Verlag, Berlin, Germany, 2007).
[12] S. Ashihara, N. Huse, A. Espagne, E. T. J. Nibbering, and T. Elsaesser, “Ultrafast Structural Dynamics of Water Induced by Dissipation of Vibrational Energy,” J. Phys. Chem. A 111, 743 (2007).
[11] S. Ashihara, N. Huse, A. Espagne, E. T. J. Nibbering, and T. Elsaesser, “Vibrational couplings and ultrafast relaxation of the O-H bending mode in liquid H2O,” Chem. Phys. Lett. 424, 66 (2006).
[10] N. Huse, B. D. Bruner, M. L. Cowan, J. Dreyer, E. T. J. Nibbering, R. J. D. Miller, and T. Elsaesser, “Anharmonic couplings underlying ultrafast vibrational dynamics of hydrogen bonds in liquids,” Phys. Rev. Lett. 95, 147402 (2005).
[9] M. L. Cowan*, B. D. Brunner*, N. Huse*, J. Dwyer, B. Chugh, E. T. J. Nibbering, T. Elsaesser, and R. J. D. Miller, “Ultrafast memory loss and energy redistribution in the hydrogen bond network of liquid H2O,” Nature 434, 199 (2005).
[8] N. Huse, S. Ashihara, E. T. J. Nibbering, and T. Elsaesser, “Ultrafast vibrational relaxation of O-H bending and librational excitations in liquid H2O,” Chem. Phys. Lett. 404, 389 (2005).
[7] K. Heyne, N. Huse, J. Dreyer, E. T. J. Nibbering, T. Elsaesser, and S. Mukamel, “Coherent low-frequency motions of hydrogen bonded acetic acid dimers in the liquid phase,” J. Chem. Phys. 121, 902 (2004).
[6] N. Huse, K. Heyne, J. Dreyer, E. T. J. Nibbering, and T. Elsaesser, “Vibrational Multilevel Quantum Coherence due to Anharmonic Couplings in Intermolecular Hydrogen Bonds,” Phys. Rev. Lett. 91, 197401 (2003).
[5] K. Heyne, N. Huse, E. T. J. Nibbering, and T. Elsaesser, “Ultrafast relaxation and anharmonic coupling of O-H stretching and bending excitations in cyclic acetic acid dimers,” Chem. Phys. Lett. 382, 19 (2003).
[4] K. Heyne, N. Huse, E. T. J. Nibbering, and T. Elsaesser, “Ultrafast coherent nuclear motions of hydrogen bonded carboxylic acid dimers,” Chem. Phys. Lett. 369, 591 (2003).
[3] K. Heyne, N. Huse, E. T. J. Nibbering, and T. Elsaesser, “Coherent vibrational dynamics of intermolecular hydrogen bonds in acetic acid dimers studied by ultrafast mid-infrared spectroscopy,” J. Phys.: Condens. Matter 15, S129 (2003).
[2] E. Engel, N. Huse, T. A. Klar, and S. W. Hell, “Creating λ/3 focal holes with a Mach-Zehnder interferometer,” Appl. Phys. B 77, 11 (2003).
[1] N. Huse, A. Schönle, and S. W. Hell, “Z-polarized confocal microscopy,” J. Biomed. Opt. 6, 273 (2001).
*equal contribution
Das kurze Gedächtnis des Wassers, Bild der Wissenschaft plus 10/2006.