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Related papers: Fundamental physics at an X-ray free electron lase…

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Modern x-ray free-electron lasers (XFELs) produce x-ray pulses of exceptional transverse coherence. This is due largely to the process of optical guiding by which the radiation is both refractively guided by the bunched electron beam and…

Accelerator Physics · Physics 2021-04-20 River R. Robles , Gabriel Marcus , Zhirong Huang

Free Electron Lasers (FELs) are a solution for providing intense, coherent and bright radiation in the hard X-ray regime. Due to the low wall-plug efficiency of FEL facilities, it is crucial and additionally very useful to develop complete…

Computational Physics · Physics 2018-04-10 Arya Fallahi , Alireza Yahaghi , Franz X. Kärtner

Advances in our ability to understand and utilize the world around us have always relied on the development of advanced tools for probing and manipulating materials properties. X-ray matter interactions played a critical role in the…

Materials Science · Physics 2021-08-13 Mariano Trigo , Mark P. M. Dean , David A. Reis

The routine atomic-resolution structure determination of single particles is expected to have profound implications for probing the structure-function relationship in systems ranging from energy materials to biological molecules.…

The successful operation of the hard x-ray self-seeding experiment at the LCLS opens the era of fully coherent hard x-ray free electron lasers (FELs). However, the shot-to-shot radiation fluctuation is still a serious issue. In this paper,…

Accelerator Physics · Physics 2013-05-07 Haixiao Deng , Chao Feng

For the last decade numerous researchers have been trying to develop experimental techniques to use X-ray Thomson scattering as a method to measure the temperature, electron density, and ionization state of high energy density plasmas such…

Plasma Physics · Physics 2012-10-02 J. Nilsen , W. R. Johnson , K. T. Cheng

On the wake of the results obtained so far at the SPARC\_LAB test-facility at the Laboratori Nazionali di Frascati (Italy), we are currently investigating the possibility to design and build a new multi-disciplinary user-facility, equipped…

Accelerator Physics · Physics 2018-12-26 M. Ferrario , D. Alesini , M. P. Anania , M. Artioli , A. Bacci , S. Bartocci , R. Bedogni , M. Bellaveglia , A. Biagioni , F. Bisesto , F. Brandi , E. Brentegani , F. Broggi , B. Buonomo , P. L. Campana , G. Campogiani , C. Cannaos , S. Cantarella , F. Cardelli , M. Carpanese , M. Castellano , G. Castorina , N. Catalan Lasheras , E. Chiadroni , A. Cianchi , R. Cimino , F. Ciocci , D. Cirrincione , G. A. P. Cirrone , R. Clementi , M. Coreno , R. Corsini , M. Croia , A. Curcio , G. Costa , C. Curatolo , G. Cuttone , S. Dabagov , G. Dattoli , G. D'Auria , I. Debrot , M. Diomede , A. Drago , D. Di Giovenale , S. Di Mitri , G. Di Pirro , A. Esposito , M. Faiferri , L. Ficcadenti , F. Filippi , O. Frasciello , A. Gallo , A. Ghigo , L. Giannessi , A. Giribono , L. Gizzi , A. Grudiev , S. Guiducci , P. Koester , S. Incremona , F. Iungo , L. Labate , A. Latina , S. Licciardi , V. Lollo , S. Lupi , R. Manca , A. Marcelli , M. Marini , A. Marocchino , M. Marongiu , V. Martinelli , C. Masciovecchio , C. Mastino , A. Michelotti , C. Milardi , V. Minicozzi , F. Mira , S. Morante , A. Mostacci , F. Nguyen , S. Pagnutti , L. Pellegrino , A. Petralia , V. Petrillo , L. Piersanti , S. Pioli , D. Polese , R. Pompili , F. Pusceddu , A. Ricci , R. Ricci , R. Rochow , S. Romeo , J. B. Rosenzweig , M. Rossetti Conti , A. R. Rossi , U. Rotundo , L. Sabbatini , E. Sabia , O. Sans Plannell , D. Schulte , J. Scifo , V. Scuderi , L. Serafini , B. Spataro , A. Stecchi , A. Stella , V. Shpakov , F. Stellato , E. Turco , C. Vaccarezza , A. Vacchi , A. Vannozzi , A. Variola , S. Vescovi , F. Villa , W. Wuensch , A. Zigler , M. Zobov

We present results from the SPring-8 Angstrom Compact free electron LAser (SACLA) XFEL facility, using a high intensity ($\sim\!10^{20}\,$W/cm$^2$) X-ray pump X-ray probe scheme to observe changes in the ionic structure of silicon induced…

Compact laboratory-scale X-ray sources still rely on the same fundamental principles as in the first X-ray tubes developed more than a century ago. In recent years, significant research and development have focused on large-scale X-ray…

In this work we provide theoretical background for the analysis of second-order correlation functions in experiments performed at the soft x-ray free-electron lasers (XFELs). Typically, soft x-ray beamlines at XFELs are equipped by the…

Optics · Physics 2021-08-18 Ivan A. Vartanyants , Ruslan Khubbutdinov

The advent of x-ray free-electron lasers (XFELs) has enabled a range of new experimental investigations into the properties of matter driven to extreme conditions via intense x-ray-matter interactions. The femtosecond timescales of these…

X-ray free electron lasers (XFELs) generate sequences of ultra-short, spatially coherent pulses of x-ray radiation. We propose the diffraction focusing spectrometer (DFS), which is able to measure the whole energy spectrum of the radiation…

Optics · Physics 2013-02-22 V. G. Kohn , O. Y. Gorobtsov , I. A. Vartanyants

The LUXE experiment aims at studying high-field QED in electron-laser and photon-laser interactions, with the 16.5 GeV electron beam of the European XFEL and a laser beam with power of up to 350 TW. The experiment will measure the spectra…

High Energy Physics - Experiment · Physics 2022-10-19 Veta Ghenescu

A Free Electron Laser (FEL) facility utilizing a recirculated Superconducting Radio Frequency (SRF) linear accelerator (linac) provides the opportunity to achieve about five times greater photon energy than an unrecirculated linac of…

Accelerator Physics · Physics 2015-06-17 R. C. York

We present for the first time the concept of a seeded {\gamma} quantum Free-Electron-Laser (QFEL) at 478 keV, which has very different properties compared to a classical. The basic concept is to produce a highly brilliant {\gamma} beam via…

Accelerator Physics · Physics 2015-06-03 M. M. Günther , M. Jentschel , P. G. Thirolf , T. Seggebrock , D. Habs

One of the options for increasing longitudinal coherency of X-ray free electron lasers (XFELs) is their seeding with microbunched electron beam. Several schemes leading to significant amplitude of the beam bunching at X-ray wavelengths were…

Accelerator Physics · Physics 2012-07-23 Nikolai A. Yampolsky , Bruce E. Carlsten

Solid state material at high pressure is prevalent throughout the Universe, and an understanding of the structure of matter under such extreme conditions, gleaned from x-ray diffraction, has been pursued for the best part of a century. The…

Other Condensed Matter · Physics 2022-09-14 Justin S. Wark , Malcolm I. McMahon , Jon H. Eggert

We are proposing a facility based on high gradient acceleration via x-band RF structures and plasma acceleration. We plan to reach an electron energy of the order of 1 GeV, suitable to drive a Free Electron Laser for applications in the so…

Electromagnetic radiation in the soft x-ray spectral range ($1-100~\rm{nm}$ wavelengths or $0.01-1~\rm{keV}$ photon energies) is rapidly gaining importance in both fundamental research and industrial applications. At present the degree of…

A quantum kinetic equation coupled with Maxwell's equation is used to estimate the laser power required at an XFEL facility to expose intrinsically quantum effects in the process of QED vacuum decay via spontaneous pair production. A 9…

Nuclear Theory · Physics 2010-03-04 C. D. Roberts , S. M. Schmidt , D. V. Vinnik