English
Related papers

Related papers: Femtosecond Diffraction and Dynamic High Pressure …

200 papers

Ultrafast dynamics are generally investigated using stroboscopic pump-probe measurements, which characterize the sample properties for a single, specific time delay. These measurements are then repeated for a series of discrete time delays…

We present a table-top setup for femtosecond time-resolved X-ray diffraction based on a Cu K{\alpha} (8.05 keV) laser driven plasma X-ray source. Due to its modular design it provides high accessibility to its individual components (e.g.…

X-ray free-electron lasers (XFELs) of high brightness have opened new opportunities for exploring ultrafast dynamical processes in matter, enabling imaging and movies of single molecules and particles at atomic resolution. In this paper, we…

Exploring and understanding ultrafast processes at the atomic level is a scientific challenge. Femtosecond X-ray Absorption Spectroscopy (XAS) is an essential experimental probing technic, as it can simultaneously reveal both electronic and…

Here we propose to exploit the low energy bandwidth, small wavelength and penetration power of ultrashort pulses from XFELs for resonant Small Angle Scattering (SAXS) on plasma structures in laser excited plasmas. Small angle scattering…

Plasma Physics · Physics 2016-03-09 Thomas Kluge , M. Bussmann , H. -K. Chung , C. Gutt , L. G. Huang , M. Zacharias , U. Schramm , T. E. Cowan

The high-intensity version of multiwavelength anomalous diffraction (MAD) has a potential for solving the phase problem in femtosecond crystallography with x-ray free-electron lasers (XFELs). For MAD phasing, it is required to calculate or…

Atomic Physics · Physics 2017-02-16 Sang-Kil Son , Henry N. Chapman , Robin Santra

We present 50-fs, single-shot measurements of the x-ray thermal diffuse scattering (TDS) from copper foils that have been shocked via nanosecond laser-ablation up to pressures above 135~GPa. We hence deduce the x-ray Debye-Waller (DW)…

Materials Science · Physics 2025-01-07 J. S. Wark , D. J. Peake , T. Stevens , P. G. Heighway , Y. Ping , P. Sterne , B. Albertazzi , S. J. Ali , L. Antonelli , M. R. Armstrong , C. Baehtz , O. B. Ball , S. Banerjee , A. B. Belonoshko , C. A. Bolme , V. Bouffetier , R. Briggs , K. Buakor , T. Butcher , S. Di Dio Cafiso , V. Cerantola , J. Chantel , A. Di Cicco , A. L. Coleman , J. Collier , G. Collins , A. J. Comley , F. Coppari , T. E. Cowan , G. Cristoforetti , H. Cynn , A. Descamps , F. Dorchies , M. J. Duff , A. Dwivedi , C. Edwards , J. H. Eggert , D. Errandonea , G. Fiquet , E. Galtier , A. Laso Garcia , H. Ginestet , L. Gizzi , A. Gleason , S. Goede , J. M. Gonzalez , M. G. Gorman , M. Harmand , N. Hartley , C. Hernandez-Gomez , A. Higginbotham , H. Höppner , O. S. Humphries , R. J. Husband , T. M. Hutchinson , H. Hwang , D. A. Keen , J. Kim , P. Koester , Z. Konopkova , D. Kraus , A. Krygier , L. Labate , A. E. Lazicki , Y. Lee , H-P. Liermann , P. Mason , M. Masruri , B. Massani , E. E. McBride , C. McGuire , J. D. McHardy , D. McGonegle , R. S. McWilliams , S. Merkel , G. Morard , B. Nagler , M. Nakatsutsumi , K. Nguyen-Cong , A-M. Norton , I. I. Oleynik , C. Otzen , N. Ozaki , S. Pandolfi , A. Pelka , K. A. Pereira , J. P. Phillips , C. Prescher , T. Preston , L. Randolph , D. Ranjan , A. Ravasio , R. Redmer , J. Rips , D. Santamaria-Perez , D. J. Savage , M. Schoelmerich , J-P. Schwinkendorf , S. Singh , J. Smith , R. F. Smith , A. Sollier , J. Spear , C. Spindloe , M. Stevenson , C. Strohm , T-A. Suer , M. Tang , M. Toncian , T. Toncian , S. J. Tracy , A. Trapananti , T. Tschentscher , M. Tyldesley , C. E. Vennari , T. Vinci , S. C. Vogel , T. J. Volz , J. Vorberger , J. T. Willman , L. Wollenweber , U. Zastrau , E. Brambrink , K. Appel , M. I. McMahon

Since the discovery of electron-wave duality, electron scattering instrumentation has developed into a powerful array of techniques for revealing the atomic structure of matter. Beyond detecting local lattice variations in equilibrium…

Amorphous, glass, and glass-ceramic materials practically always include a significant number (more than eight) of crystalline phases, with the contents of the latter ranging from a few wt.% to several hundredths or tenths of wt.%. The…

Abrupt time variations of the properties of optical materials have been at the center of intense research efforts in recent years, with the prospect of enabling extreme wave transformations and of leveraging time as a degree of freedom for…

Many fundamental processes of structural changes at surfaces occur on a pico- or femtosecond time scale. In order to study such ultra-fast processes, we have combined modern surface science techniques with fs-laser pulses in a pump-probe…

Mesoscale and Nanoscale Physics · Physics 2023-12-01 Michael Horn von Hoegen

Tracing the motion of electrons has enormous relevance to understanding ubiquitous phenomena in ultrafast science, such as the dynamical evolution of the electron density during complex chemical and biological processes. Scattering of…

Atomic Physics · Physics 2013-03-28 Gopal Dixit , Jan Malte Slowik , Robin Santra

Plasmas are beset with instabilities of all types, hydrodynamic, magneto-hydrodynamic, and electromagnetic. These instabilities are complex, occur over a large range of temporal and spatial scales, are most often unmanageable, and have…

We study the dynamic contraction a self-sustained glow discharge in air in a rectangular duct with convective cooling. A two dimensional numerical model of the plasma contraction was developed in a cylindrical frame. The process is…

Plasma Physics · Physics 2014-04-02 M. N. Shneider , M. S. Mokrov , G. M. Milikh

Single-particle imaging experiments of biomolecules at x-ray free-electron lasers (XFELs) require processing of hundreds of thousands (or more) of images that contain very few x-rays. Each low-flux image of the diffraction pattern is…

Instrumentation and Detectors · Physics 2012-03-16 Hugh T. Philipp , Kartik Ayyer , Mark W. Tate , Veit Elser , Sol M. Gruner

Using a novel ultrahigh resolution ($\Delta E \sim 0.1\,$eV) setup to measure electronic features in x-ray Thomson scattering (XRTS) experiments at the European XFEL in Germany, we have studied the collective plasmon excitation in aluminium…

A theoretical model is developed for the interaction of intense femtosecond laser pulses with solid targets on the basis of the two-temperature equation of state for an irradiated substance. It allows the description of the dynamics of the…

Modern Flash X-ray diffraction Imaging (FXI) acquires diffraction signals from single biomolecules at a high repetition rate from X-ray Free Electron Lasers (XFELs), easily obtaining millions of 2D diffraction patterns from a single…

Image and Video Processing · Electrical Eng. & Systems 2020-10-28 Jing Liu , Stefan Engblom , Carl Nettelblad

Ultrahigh peak power femtosecond laser pulses create extreme states of matter that are currently being probed with great interest. Plasma optics have been proposed for shaping and amplifying high-power pulses, but they are subject to huge…

‹ Prev 1 3 4 5 6 7 10 Next ›