SASE FEL with energy-chirped electron beam and its application for generation of attosecond pulses
arXiv:physics/0604165 · doi:10.1103/PhysRevSTAB.9.050702
Abstract
Influence of a linear energy chirp in the electron beam on a SASE FEL operation is studied analytically and numerically using 1-D model. Explicit expressions for Green's functions and for output power of a SASE FEL are obtained for high-gain linear regime in the limits of small and large energy chirp parameter. Saturation length and power versus energy chirp parameter are calculated numerically. It is shown that the effect of linear energy chirp on FEL gain is equivalent to the linear undulator tapering (or linear energy variation along the undulator). A consequence of this fact is a possibility to perfectly compensate FEL gain degradation, caused by the energy chirp, by means of the undulator tapering independently of the value of the energy chirp parameter. An application of this effect for generation of attosecond pulses from a hard X-ray FEL is proposed. Strong energy modulation within a short slice of an electron bunch is produced by few-cycle optical laser pulse in a short undulator, placed in front of the main undulator. Gain degradation within this slice is compensated by an appropriate undulator taper while the rest of the bunch suffers from this taper and does not lase. Three-dimensional simulations predict that short (200 attoseconds) high-power (up to 100 GW) pulses can be produced in Angstroem wavelength range with a high degree of contrast. A possibility to reduce pulse duration to sub-100 attosecond scale is discussed.
14 pages, 7 figures
Cited by in corpus (12)
- Beam by design: laser manipulation of electrons in modern accelerators
- Mode-Locking in a Free-Electron Laser Amplifier
- Femtosecond non-equilibrium dynamics of clusters irradiated with short intense VUV pulses
- Longitudinal impedance and wake from XFEL undulators. Impact on current-enhanced SASE schemes
- Statistical properties of a free-electron laser revealed by the Hanbury Brown and Twiss interferometry
- Atomic clusters of various sizes irradiated with short intense pulses of VUV radiation
- Longitudinal Wake Field for an Electron Beam Accelerated through a Ultra-High Field Gradient
- Measurements of wake-induced electron beam deflection in a dechirper at the Linac Coherent Light Source
- Application of a modified chirp-taper scheme for generation of attosecond pulses in XUV and soft X-ray FELs
- Ultra-high harmonic conversion of a seeded free-electron laser via harmonic optical klystron
- Simulation Study of Energy Chirp Induced Effects in Laser Wakefield Accelerator Driven Free Electron Laser
- Orbit-Controlled Generation of Two-color Attosecond Mode-locked Free-electron Lasers