Philip heimann slac

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    About project SlidePlayer Terms of Service. Published online Jan 1. This article has been cited by other articles in PMC. Richard M. If you wish to download it, please recommend it to your friends in any social system. Further discussions will be conducted with the vendor to minimize the use of non-UHV compatible materials.

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  • Laser power meters as an Xray power diagnostic for LCLSII

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    Philip Heimann is part of Stanford Profiles, official site for faculty, postdocs, students and staff Senior Staff Scientist, SLAC National Accelerator Laboratory. The award was given to a team including SLAC's Bob Nagler and Philip Heimann and led by researchers at Oxford University.

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    View Philip Heimann's profile on LinkedIn, the world's largest professional community. Philip Senior Staff Scientist at SLAC National Accelerator Laboratory.
    These results provide a second calibration data set for the power meters.

    Figure 5. Please wait. The SXR Instrument was operated in non-monochromatic mode with the X-ray beam impinging on an unruled portion of the grating.

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    In damage studies surface roughening, ablation and cracking has been observed. If you wish to download it, please recommend it to your friends in any social system.

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    Philip heimann slac
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    Krause, M. These properties require novel x-ray optics and diagnostics. The response time of the power meters can be observed from periods of time when the beam was temporarily lost, as shown in Fig.

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    Krumrey, M. Presentation is loading. A motorized linear motion feedthrough is used to translate the power meters into the X-ray beam or alternatively to let the beam pass through.

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    Laser power meters as an Xray power diagnostic for LCLSII

    Philip A. Heimann. SLAC National Accelerator Lab. SPIE Involvement: Retrieving Data, please wait CONTACT DETAILS.

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    Philip Heimann,a,* Stefan Moeller,a Sergio Carbajo,a Sanghoon Song,a Georgi aLinac Coherent Light Source, SLAC National Accelerator. the Matter under Extreme Conditions (MEC) Instrument and X-ray Free Electron Laser Produced Plasmas Philip Heimann LCLS, SLAC, Stanford, USA GoLP.
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    Conference PhotonDiag Workshop special issue.

    However, a considerable length along the X-ray path is needed for the GMD and the associated differential pumping. A, — For beamline characterization, the X-ray beam may be blocked, and a slow measurement averaging over a number of pulses is sufficient. In the energy detectors, a pyroelectric material is commonly used to generate an electrical current from a temperature change.

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    Two possible loss mechanisms that could affect the power meter responsivity are X-ray fluorescence and electrons escaping from the absorber surface. Use the FEL to make ablative imprint in a solid with variable attenuation. SPIE, Q.

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    Further discussions will be conducted with the vendor to minimize the use of non-UHV compatible materials.

    5 Replies to “Philip heimann slac”

    1. Techniques need to be converted into an on-line diagnostic. In the energy detectors, a pyroelectric material is commonly used to generate an electrical current from a temperature change.

    2. Correspondence e-mail: ude. The authors would like to thank Burt Mooney and Luc Carmichael for many helpful discussions.

    3. Chow 23 23 Tangential slope error, 14 mrad grazing angle Moving mirror further from source helps.