Layout of XXX Beamlines Facility Sample Clauses

Layout of XXX Beamlines Facility. The ultrashort and ultra-intense pulses of light and the particles generated XXX Beamlines from interaction with solid state and gas target materials will allow a broad spectrum of projects in fundamental and applied research in chemistry, biology, medical technologies, development of new materials, and other areas. The research activities within the XXX Beamlines project are structured into six experimental halls where stations are placed to address the Experimental hall E1 will house laser-driven secondary sources and experimental end-stations for applications in molecular, bio-medical, and materials sciences. Experiments will exploit synchronized laser photon beams in the VUV and hard X-ray range. Instruments include: Secondary Sources – ELI Beamlines Source E1: X-Ray Sources HHG E1: X-Ray Sources PXS E2: X-Ray Sources Betatron E2: X-Ray Sources Xxxxxxx E4: Ion Acceleration ELIMAIA E5: Laser Undulator Illuminating Source XXXX E5: Electron Accelaration XXXX Table 2 – XXX Beamlines Secondary Sources Experimental hall – XXX Beamlines Station E1: Material and Biomolecular Applications MAC E1: Material and Biomolecular Applications Trex E1: Material and Biomolecular Applications SRS E1: Material and Biomolecular Applications ELIps E2: X-Ray Source – Betatron source Gammatron station E2: X-Ray Source – Xxxxxxx source Xxxxxxx stations E3: Betatron Source P3 E3: Plasma Physics Platform P3 E4: Ion Acceleration ELIMED E5: Laser Undulator Illuminating Source XXXX Station E5: Electron Accelaration XXXX Station Table 3 – XXX Beamlines Experimental Stations MAC: a Multi-purpose chamber for Atomic, molecular, and optical sciences and Coherent Diffractive Imaging. ELIps: VUV ellipsometer for sub-ps experiments; an end-station for VUV and soft X-ray materials. Hard X-ray end-station: A modular station for Time Resolved Experiments such as scattering, diffraction, spectroscopy and imaging with X-rays. Optical probes and pump beams: An advanced station for optical spectroscopy, including stimulated Raman scattering; the source for a wide array of synchronized pump beams from UV to IR and THz. The experimental hall E2 is dedicated to ultrafast and bright, hard X-ray beams. A PW-class laser will be available at a 10 Hz repetition rate. A range of parameters may be adjusted including laser intensity, laser spot size and duration, and electron density in the gas. Electrons are accelerated to relativistic energies and wiggled by the plasma itself (Betatron source) or by a seco...
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