| Literature DB >> 31074451 |
Minseok Kim1, Chang Ki Min1, Intae Eom1.
Abstract
Optical laser systems for ultrafast X-ray sciences have been established at the Pohang Accelerator Laboratory X-ray Free-Electron Laser (PAL-XFEL) beamlines. Three Ti:sapphire regenerative amplifier systems are synchronized to the XFEL with femtosecond precision, and the low temporal jitter of the PAL-XFEL results in an experimental time resolution below 150 fs (full width at half-maximum). A fundamental wave and its harmonics are currently provided for all beamlines, and tunable sources from ultraviolet to near-infrared are available for one beamline. The position stability of the optical laser extracted from the intensity-based center of mass at the sample position is less than 3% (r.m.s.) of the spot size.Entities:
Keywords: XFELs; amplifier systems; beamlines; fundamental waves; optical lasers; time-resolved XFEL experiments
Year: 2019 PMID: 31074451 PMCID: PMC6792299 DOI: 10.1107/S1600577519003515
Source DB: PubMed Journal: J Synchrotron Radiat ISSN: 0909-0495 Impact factor: 2.616
Specifications of the Ti:sapphire laser system at the beamlines and their available laser parameters
| Experimental hall | HX | SX | |
|---|---|---|---|
| Beamline | XSS | NCI | SSS |
| Repetition rate (MHz) (oscillator) | 79.33 | ||
| Repetition rate (Hz) (amplifier) | <120 | <1080 | |
| Fundamental wavelength (nm) | 800 | ||
| Pulse duration (fs) (FWHM) | 100 | 40 | |
| Maximum pulse energy at sample position | 5 mJ at 800 nm | 4 mJ at 800 nm | |
| 1 mJ at 400 nm | 1 mJ at 400 nm | ||
| 0.7 mJ at 266 nm | 0.5 mJ at 266 nm | ||
| Optical parametric amplifier | 240–2600 nm | None | |
| Incident angle to the XFEL | Non-collinear (∼10°) | CXI | Collinear (∼1°) |
| Collinear (∼1°) | SFX: perpendicular (∼90°) | ||
CXI: coherent X-ray imaging.
Figure 1Optical laser layout in the hard X-ray beamlines of the PAL-XFEL.
Figure 2Optical laser layout in the soft X-ray XAS/XES end-station of the PAL-XFEL.
Figure 3Synchronization map between the experimental laser systems and the PAL-XFEL timing system. DRO: dielectric resonator oscillator; BOM-PD: balanced optical and microwave phase detector.
Figure 4(a) Histogram of the arrival-time jitter for 6000 XFEL shots and (b) position stability for 1 h of optical laser (800 nm) measured at the XSS beamline. Width of the timing jitter was 42 fs (FWHM) and the position jitter (intensity-based center of mass) was less than 3% (r.m.s.) of the beam diameter. In the position measurement, a 250 µm (1/e 2 width) focal spot was formed by the 1.5 m focal length lens.