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Dive into the research topics where Michael Kozina is active.

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Featured researches published by Michael Kozina.


Structural Dynamics | 2014

Measurement of transient atomic displacements in thin films with picosecond and femtometer resolution.

Michael Kozina; Tiandou Hu; Joshua S. Wittenberg; Erzsi Szilagyi; Marlene Trigo; Terry A. Miller; Ctirad Uher; Anoop R. Damodaran; Lane W. Martin; Apurva Mehta; Jeff Corbett; J. Safranek; David A. Reis; Aaron M. Lindenberg

We report measurements of the transient structural response of weakly photo-excited thin films of BiFeO3, Pb(Zr,Ti)O3, and Bi and time-scales for interfacial thermal transport. Utilizing picosecond x-ray diffraction at a 1.28 MHz repetition rate with time resolution extending down to 15 ps, transient changes in the diffraction angle are recorded. These changes are associated with photo-induced lattice strains within nanolayer thin films, resolved at the part-per-million level, corresponding to a shift in the scattering angle three orders of magnitude smaller than the rocking curve width and changes in the interlayer lattice spacing of fractions of a femtometer. The combination of high brightness, repetition rate, and stability of the synchrotron, in conjunction with high time resolution, represents a novel means to probe atomic-scale, near-equilibrium dynamics.


Nano Letters | 2017

Dynamic Optical Tuning of Interlayer Interactions in the Transition Metal Dichalcogenides

Ehren M. Mannebach; Clara Nyby; Friederike Ernst; Yao Zhou; John R. Tolsma; Yao Li; Meng-Ju Sher; I-Cheng Tung; Hua Zhou; Qi Zhang; Kyle Seyler; Genevieve Clark; Yu Lin; Diling Zhu; J. M. Glownia; Michael Kozina; Sanghoon Song; S. Nelson; Apurva Mehta; Yifei Yu; Anupum Pant; Ozgur Burak Aslan; Archana Raja; Yinsheng Guo; Anthony D. DiChiara; Wendy L. Mao; Linyou Cao; Sefaattin Tongay; Jifeng Sun; David J. Singh

Modulation of weak interlayer interactions between quasi-two-dimensional atomic planes in the transition metal dichalcogenides (TMDCs) provides avenues for tuning their functional properties. Here we show that above-gap optical excitation in the TMDCs leads to an unexpected large-amplitude, ultrafast compressive force between the two-dimensional layers, as probed by in situ measurements of the atomic layer spacing at femtosecond time resolution. We show that this compressive response arises from a dynamic modulation of the interlayer van der Waals interaction and that this represents the dominant light-induced stress at low excitation densities. A simple analytic model predicts the magnitude and carrier density dependence of the measured strains. This work establishes a new method for dynamic, nonequilibrium tuning of correlation-driven dispersive interactions and of the optomechanical functionality of TMDC quasi-two-dimensional materials.


Terahertz Emitters, Receivers, and Applications IX | 2018

Terahertz-pump experiments on complex solids at x-ray FELs

Matthias C. Hoffmann; Michael Kozina

We present recent progress in understanding nonlinear phonon dynamics driven by intense THz field strengths using ultrafast x-ray diffraction. This technique allows us to characterize the motion of the atomic lattice inside the sample on a sub-cycle timescale while the driving field is still present. In the example of strontium titanate (SrTiO3) we observe harmonic generation and phonon upconversion when the fundamental soft mode is driven into the nonlinear regime by a single-cycle THz pulse.


Nature Physics | 2013

Fourier-transform inelastic X-ray scattering from time- and momentum-dependent phonon-phonon correlations

M. Trigo; M. Fuchs; Jing-Yuan Chen; M. P. Jiang; Marco Cammarata; S. Fahy; David M. Fritz; Kelly J. Gaffney; S. Ghimire; Andrew Higginbotham; S. L. Johnson; Michael Kozina; Jörgen Larsson; Henrik T. Lemke; Aaron M. Lindenberg; G. Ndabashimiye; Florian Quirin; Klaus Sokolowski-Tinten; Ctirad Uher; Guoyu Wang; J. S. Wark; Diling Zhu; David A. Reis


Journal of Physical Chemistry C | 2017

The Complexity of the CaF2:Yb System: A Huge, Reversible, X-ray-Induced Valence Reduction

Cameron MacKeen; F. Bridges; Luis Seijo; Zoila Barandiarán; Michael Kozina; Apurva Mehta; Michael F. Reid; Jon-Paul R. Wells


arXiv: Materials Science | 2013

Direct measurement of time-dependent density-density correlations in a solid through the acoustic analog of the dynamical Casimir effect

M. Trigo; M. Fuchs; J. Chen; M. P. Jiang; Michael Kozina; G. Ndabashimiye; Marco Cammarata; G. Chien; S. Fahy; D. M. Fritz; K. Gaffney; S. Ghimire; A. Higginbotham; S. L. Johnson; J. Larsson; H. Lemke; Aaron M. Lindenberg; F. Quirin; K. Sokolowski-Tinten; C. Uher; J. S. Wark; Diling Zhu; David A. Reis


arXiv: Materials Science | 2018

Terahertz-Driven Phonon Upconversion in SrTiO3

Michael Kozina; Michael Fechner; Premysl Marsik; Tim Brandt van Driel; James M. Glownia; C. Bernhard; M. Radovic; Diling Zhu; Stefano Bonetti; U. Staub; Matthias C. Hoffmann


Bulletin of the American Physical Society | 2017

The complexity of the CaF

Cameron MacKeen; F. Bridges; Michael Kozina; Apurva Mehta; Michael F. Reid; Jon-Paul R. Wells; Zoila Barandiarán


Bulletin of the American Physical Society | 2014

_2

Michael Kozina; Te Hu; Apurva Mehta; David A. Reis; Aaron M. Lindenberg


Bulletin of the American Physical Society | 2012

:Yb system: evidence that CaF

Michael Kozina; M. Fuchs; Jian Chen; Mason P. Jiang; Pice Chen; Paul G. Evans; Bjorn Vermeersch; Je-Hyeong Bahk; Ali Shakouri; Dale Brewe; David A. Reis

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Apurva Mehta

SLAC National Accelerator Laboratory

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David A. Reis

SLAC National Accelerator Laboratory

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Diling Zhu

SLAC National Accelerator Laboratory

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Ctirad Uher

University of Michigan

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F. Bridges

University of California

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M. Fuchs

SLAC National Accelerator Laboratory

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M. Trigo

SLAC National Accelerator Laboratory

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