| Literature DB >> 29271754 |
Philip Heimann1, Stefan Moeller1, Sergio Carbajo1, Sanghoon Song1, Georgi Dakovski1, Dennis Nordlund2, David Fritz1.
Abstract
For the LCLS-II X-ray instruments, laser power meters are being developed as compact X-ray power diagnostics to operate at soft and tender X-ray photon energies. These diagnostics can be installed at various locations along an X-ray free-electron laser (FEL) beamline in order to monitor the transmission of X-ray optics along the beam path. In addition, the power meters will be used to determine the absolute X-ray power at the endstations. Here, thermopile power meters, which measure average power, and have been chosen primarily for their compatibility with the high repetition rates at LCLS-II, are evaluated. A number of characteristics in the soft X-ray range are presented including linearity, calibrations conducted with a photodiode and a gas monitor detector as well as ultra-high-vacuum compatibility tests using residual gas analysis. The application of these power meters for LCLS-II and other X-ray FEL sources is discussed.Entities:
Keywords: X-ray free electron laser; diagnostics; power meter
Year: 2018 PMID: 29271754 PMCID: PMC5741121 DOI: 10.1107/S1600577517014096
Source DB: PubMed Journal: J Synchrotron Radiat ISSN: 0909-0495 Impact factor: 2.616
Figure 1(a) Photograph of a Gentec-EO model UP10P-2S-5-TE-D0 power meter. (b) Engineering model of the experimental setup.
Comparison of the responsivity of the three power meters at 1510 eV photon energy
| Date | PM1 (V mJ−1) | PM2 (V mJ−1) | PM3 (V mJ−1) |
|---|---|---|---|
| 9 November 2016 | 0.248 | 0.271 | 0.271 |
| 16 November 2016 | 0.253 | 0.272 | 0.269 |
Figure 2Linearity of PM1 at 1510 eV photon energy.
Figure 3Response time of PM3 for a short period during which the beam was lost.
Figure 4Responsivity of PM1 as a function of photon energy measured with a photodiode at SSRL BL 10-1 and with the GMD at LCLS SXR.
Figure 5RGA scan of PM3 at room temperature after bakeout.