Beamline 7.3.3. characteristics: - Elliptically bent ultrasmooth mirrors in a Kirkpatrick-Baez configuration provide micron to submicron x-ray spot size on the sample. - High x-ray flux provided by synchrotron bend magnet source.

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Ptychography is an emerging high resolution coherent imaging technique which can improve the resolution of current scanning transmission X-ray microscopy systems by over ten-fold. Development of this capability is underway at Stanford Synchrotron Radiation Lightsource, SLAC National Accelerator Laboratory, to establish sub-5 nm resolution ptychographic imaging with spatially resolved near-edge

- Stop and restart Tomcat web server as described Dimosthenis Sokaras at SSRL Beamline 6-2. (Photo by Brad Plummer.) A new spectroscopy instrument has been installed on Beamline 6-2 at the Stanford Synchrotron Radiation Lightsource, where staff scientists are now working to test its various components before offering beam time to users this spring. A beamline has been constructed at Stanford Synchrotron Radiation Laboratory (SSRL) whose radiation source is a multipole permanent magnet wiggler installed in a straight section of the SPEAR 3-3.5 GeV electron storage ring. The wiggler is a hybrid design that utilizes Nd-Fe alloy magnet material combined with Vanadium Permendur poles. It is approximately 2 m long and has 15 full wiggler Beamline Name: BL9-2 Primary Contact: Name: Silvia Russo: Secondary Contact: Name: Mike Soltis: Owner/Operator: SSRL-SMB-MC: Status: Operational %Time Available (general use) 3532 J. Med. Chem. 2010, 53, 3532–3551 DOI: 10.1021/jm901713n Identification of 4,5-Dihydro-1H-pyrazolo[4,3-h]quinazoline Derivatives as a New Class of Orally and Selective Polo-Like Kinase 1 Inhibitors Italo Beria,* Dario Ballinari, Jay Aaron Bertrand, Daniela Borghi, Roberto Tiberio Bossi, Maria Gabriella Brasca, Paolo Cappella, Michele Caruso, Walter Ceccarelli, Antonella Ciavolella

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That may be because SSRL's staff scientists have an unusual amount of independence; they spend only half their time helping users launch and maintain experiments in the beamlines. 2020-07-30 · The new beamline at the Department of Energy’s SLAC National Accelerator Laboratory combines an extra bright, tightly focused X-ray beam with robotics, automation, full remote access and data processing systems to expand the types of macromolecules research teams can study and allow them to run experiments faster than before and from their home laboratories. A few months from now, Beamline 14-1 will grow to include a second branch line, 14-3, which will focus on X-ray absorption spectroscopy in the softer (longer-wavelength) X-ray energy region. Both lines 14-1 and 14-3 will add new capabilities to the overall SSRL Structural Molecular Biology program. 2018-01-23 · A remote desktop application runs on the User's home computer that displays an SSRL beamline desktop; Blu-Ice and data processing programs run as if the User was at the beamline.

A highly automated beamline for the fully automatic collection of data from crystals of macromolecules.

A few months from now, Beamline 14-1 will grow to include a second branch line, 14-3, which will focus on X-ray absorption spectroscopy in the softer (longer-wavelength) X-ray energy region. Both lines 14-1 and 14-3 will add new capabilities to the overall SSRL Structural Molecular Biology program.

Beamline Name: BL4-3 Primary Contact: Name: Matthew Latimer: Secondary Contact: Name: Erik Nelson: Owner/Operator: SSRL-SMB-XAS: Status: Operational: Status Details: Open %Time Available (general use) 100: Experiments: XAFS, EXAFS: Experiments Details: Beam line 4-3 is a wiggler side-station beam line for X-ray absorption spectroscopy and EXAFS 46 rows Beamline 4-3 was newly reopened as of 4/6/2009 bringing special capabilities for soft-energy (2.4-6 keV) studies in addition to hard x-rays. Beamline 4-3 now replaces 6-2 as the preferred location for Sulfur K-edge experiments at SSRL. SSRL offers more than 30 experimental stations, supporting a variety of techniques including: macromolecular crystallography, soft and hard x-ray microscopy, microXAS imaging, x-ray scattering and diffraction, photoemission spectroscopy and x-ray absorption and emission spectroscopies.

Beamline 4-3 ssrl

SSRL beamline BL 4-1 in transmission mode using a Si (220) double crystal monochromator. Edge calibration was performed using Zr (17988 eV) located in front of a reference ion-chamber and measured simultaneously with each spectral sample. All data processing, including normalization, was carried out using the software SIXPACK

Energy: 0.0000 GeV, Current: 0.1228 mA, Ring Pres. BL 4 - Closed. BL 4-1. BL 4-2. BL 4-3. 17G-IG-BL04, 1.6e-10, Torr. 04-0 IG2, 3.4e-10  SSRL är en nationell användaranläggning som tillhandahåller Beamline 4-3 öppnades nyligen från och med den 4/6/2009, vilket ger  av MA Larsson · 2014 · Citerat av 11 — The XAS measurements were performed using the wiggler beam line 4-3,.

SSRL Beamline 5-4 UV or x-ray photons are directed onto a sample where they interact with the electrons within the sample, ejecting them into the vacuum. By analyzing these emitted electrons, we can learn about the properties of electrons within the sample. SSRL Beamline Map 20 pole 2T Wiggler Beamline 4-3 Enter through the back door ! Stanford Synchrotron Radiation Lightsource The Experimental Setup Tender Energy(2-5 KeV) I0 I1 I2 Fluorescence detector slits to define the beam Sample double crystal monochromator He flight path High Energy (>5000 eV) I0 I1 I2 Fluorescence detector slits to define Beamline 4-3 was newly reopened as of 4/6/2009 bringing special capabilities for soft-energy (2.4-6 keV) studies in addition to hard x-rays. Beamline 4-3 now replaces 6-2 as the preferred location for Sulfur K-edge experiments at SSRL. Spectra of the reference compounds were collected at beamline 4-3 at SSRL according to the methods described above for S XAS measurements. Our set of model compounds includes sodium sulfate, glutathione, L-cysteine and elemental sulfur that were purchased from Sigma-Aldrich (Switzerland).
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Beamline 4-3 ssrl

The use  20 Apr 2016 Beamline 4-3 uses radiation from a 20-pole, 2 T wiggler, delivering Only the diferrous compound was measured at beamline 4-3 of SSRL.

Differences in synchrotron radiation beamline shielding design between the facilities of 3GeV class and 8GeV class are discussed with regard to SLAC SSRL and SPring-8 beamlines. Summary: SSRL will be implementing a dedicated quick scanning monochromator for X-ray absorption spectroscopy (QEXAS) on BL10-2 in the fall of 2021, making it the first such monochromator on an wiggler beamline.
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A beamline has been constructed at Stanford Synchrotron Radiation Laboratory (SSRL) whose radiation source is a multipole permanent magnet wiggler installed in a straight section of the SPEAR 3-3.5 GeV electron storage ring. The wiggler is a hybrid design that utilizes Nd-Fe alloy magnet material combined with Vanadium Permendur poles. It is approximately 2 m long and has 15 full wiggler

The spatial resolution of this system is presently somewhat better than 10 μm The U.S. Department of Energy's Office of Scientific and Technical Information About Press Copyright Contact us Creators Advertise Developers Terms Privacy Policy & Safety How YouTube works Test new features Press Copyright Contact us Creators "The people at SSRL really make it stand out from other facilities," said Pierre Kennepohl, a University of British Columbia chemist studying sulfur oxidation at Beamline 4-3. That may be because SSRL's staff scientists have an unusual amount of independence; they spend only half their time helping users launch and maintain experiments in the beamlines.


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All SSRL beam lines offer advanced robotics for automated crystal quality screening. Up to 288 frozen crystals can be mounted by the beamline robot (the Stanford Automated Mounter, or SAM) and screened for diffraction quality in a matter of hours without intervention.

Highlight Probing Composite Materials to Make Better Batteries. Brief Stacking the Deck for Custom-Built This article describes a high-resolution three-dimensional CT system which has been tested on the new wiggler beamline X-2 at the Stanford Synchrotron Radiation Laboratory. The present system is a rotate-only design which uses a virtual phase CCD array camera optically coupled to a high-resolution phosphor screen. The spatial resolution of this system is presently somewhat better than 10 μm SSRL Beamline 13 Achieves First Light Light shines into Beamline 13. On February 14, the first light shone into the Stanford Synchrotron Radiation Laboratory's newest beamline. 2021-01-28 · Select the cassette type (SSRL or Puck adapter), type in the cassette number if known and click Submit.