Terawatt-scale sub-10-fs laser technology - key to generation of GW-level attosecond pulses in X-ray free electron laser
E. L. Saldin, E. A. Schneidmiller, M. V. Yurkov
Abstract
We propose a technique for the production of attosecond X-ray pulses which is based on the use of X-ray SASE FEL combined with a femtosecond laser system. A few-cycle optical pulse from a Ti:sapphire laser interacts with the electron beam in a two-period undulator resonant to 800 nm wavelength and produces energy modulation within a slice of the electron bunch. Following the energy modulator the electron beam enters the X-ray undulator and produces SASE radiation. Due to energy modulation the frequency is correlated to the longitudinal position within the few-cycle-driven slice of SASE radiation pulse. The largest frequency offset corresponds to a single-spike pulse in the time domain which is confined to one half-oscillation period near the central peak electron energy. The selection of single-spike pulses is achieved by using a crystal monochromator after the X-ray undulator. Our studies show that the proposed technique is capable to produce 300 attoseconds long single pulses with GW-level output power in the 0.1 nm wavelength range, and is applicable to the European X-Ray Laser Project XFEL and the Linac Coherent Light Source at SLAC.
Create a lesson
Related papers
Reconstruction of Beam Transverse Parameters in the Fermilab Side-Coupled Linac Using a Normalized Coordinate Framework
E. V. Chen, J-P. Carneiro, R. V. Sharankova et al.
Coherent collective amplification of terahertz microbunching seeded by laser frequency beating in relativistic electron beams
Wencai Cheng, Yin Kang, Kaiqing Zhang et al.
Heavy ion driven plasma wakefield acceleration with drift-like phase-shift acceleration scheme
Li Jiangdong, Xia Guoxing, Liu Jie et al.
Ultralow Mean Transverse Energy and High Quantum Efficiency Cryogenic Bialkali Photocathode for MHz-Repetition-Rate Electron Sources
D. Wang, S. Liu, J. Liu et al.
First Cobotic-Assisted String Assembly of PIP-II SSR2 Cavities at Fermilab
M. Parise, T. Aiazzi, C. Narug
PIP-II Project Progress and Challenges
O. Napoly