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J. B. Hastings LUSI Overview LCLS FAC March 20, 2007 LUSI Overview J. B. Hastings January 2007 Lehman Review Response to Lehman Review.

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Presentation on theme: "J. B. Hastings LUSI Overview LCLS FAC March 20, 2007 LUSI Overview J. B. Hastings January 2007 Lehman Review Response to Lehman Review."— Presentation transcript:

1 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 LUSI Overview J. B. Hastings January 2007 Lehman Review Response to Lehman Review Action Item: LUSI Plans Planning assumptions Phase I Phase II Milestones January 2007 Lehman Review Response to Lehman Review Action Item: LUSI Plans Planning assumptions Phase I Phase II Milestones

2 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 LUSI SCOPE Atomic, molecular and optical science (AMOS) Diffraction studies of stimulated dynamics (pump-probe) Coherent-scattering studies of nanoscale fluctuations (XPCS) Nano-particle and single molecule coherent x-ray imaging High energy density science (HEDS) Aluminum plasma 10 -4 -2 1 2 4 classical plasma dense plasma high den. matter G=1 Density (g/cm -3 ) G =10 G=100 t=0 t=  SLAC Report 611 Letters of Intent  LCLS Scientific Advisory Committee (SAC) review  Defined Thrust Areas

3 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 6 1 2 3 4 5 1SXR Imag Beam Delivery 2SXR Emission, AMOS (LCLS) Beam delivery (SXR P-P) 3XR pump-probe Full instrument 4XPCS Beam Delivery 5CXI Full instrument 6HEDS (Funded by others) 1SXR Imag Beam Delivery 2SXR Emission, AMOS (LCLS) Beam delivery (SXR P-P) 3XR pump-probe Full instrument 4XPCS Beam Delivery 5CXI Full instrument 6HEDS (Funded by others) LCLS LUSI HEDS (NNSA) Offset Monochromator Exp. Chamber Detector Beam Transport Project description (1)

4 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 Project Description (2) SXR Imaging SXR emission X-ray Pump-probe LCLS AMOS XPCS Offset Monochromator X-ray transport tunnel XPCS HEDS (outsideFunding) Coherent X-ray Imaging

5 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 Beam sharing to maximize science

6 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 Offset monochromator Thin transmissive crystal

7 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007

8 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007

9 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007

10 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 Project Description (3) WBS 1.2 Hard X-ray Pump-probe

11 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 Coherent (single molecule) Imaging

12 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 Coherent (single molecule) Imaging

13 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 Project description (4) WBS 1.3 Coherent x-ray imaging

14 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 Project Description (5) WBS 1.4 XPCS Offset Monochromator XPCS Coherent X-ray Imaging

15 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 Hard X-ray Intensity Monitor Compton backscatter from Be foil (up to 10 8 photons) Transmitting ( >98% w/ 100 micron Be) Position information available with use of diode array 5 micron accuracy for commercial fluorescence monitor Positional calibration performed with precision motion (< 2 µm) Compton backscatter from Be foil (up to 10 8 photons) Transmitting ( >98% w/ 100 micron Be) Position information available with use of diode array 5 micron accuracy for commercial fluorescence monitor Positional calibration performed with precision motion (< 2 µm)

16 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 Hartman Wavefront Sensor Measurement made far from focal plane Single shot operation 120 Hz with CCD modification 1.5 nm and 0.15 nm operation with customization Measurement made far from focal plane Single shot operation 120 Hz with CCD modification 1.5 nm and 0.15 nm operation with customization Image obtained from Imagine Optics, Ltd

17 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007

18 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 PriorFY2007FY2008FY2009FY2010FY2011FY2012 3.42.61015 104 March 1, 2007 Action Item Planning Assumptions 1) Funding profile 2)Instrument priorities 1)Coherent Imaging including particle injector 2)X-ray pump-probe including sample environments 3)XPCS complete to extent possible within funding 3) Establish a phased approach

19 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 CXI Phase I instrument located in Hutch 3 (temporary home, shared with XPP) X-ray beam focusingBe lens system for 1 and 2 micron foci Sample chamberSample diagnostics (ion and electron time of flight, visible light), raster stage for supported sample, port for particle injector, detector stage Beam diagnostics Control system DetectorShared use of LCLS 2 dimensional detector Delivered at CD-4a

20 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 XPP Phase I instrument located in Hutch 3 (permanent home) X-ray beam focusingBe lens system 8 circle diffractometer Laser opticsShare the laser system with the AMOS experiment Beam diagnosticsElectro-optic timing sensing Control system Detectorprototype for the LCLS 2 dimensional detector Delivered at CD-4a

21 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007

22 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007

23 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 CXI instrument located in Hutch 5: X-ray beam focusingBe lens system for 10 micron focus, Kirkpatrick Baez systems for 1 and 0,1 micron foci Sample chamberSample diagnostics (ion and electron time of flight, visible light), raster stage for supported sample, cryo-EM goniometer for nanosacle objects, the particle injector, detector stage and the precision instrument stand, capability to add laser sample alignment Beam diagnosticsIncident beam intensity, wavefront sensor to measure the focal spot size. Control systemComplete control system and data acquisition and storage DetectorShared use of LCLS 2 dimensional detector optimized for the needs of CXI Delivered at the end of the Project

24 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 XPP instrument located in Hutch 3 X-ray beam focusingBe lens system Offset monochromatorA large offset monochromator to both provide monochromatic operation of XRPP and permit beam sharing 8 circle diffractometer X-ray emission spectrometer Laser opticsDedicated laser system providing both OPA as well as harmonics Beam diagnosticsComplete diagnostic suite Control systemComplete control system and data acquisition and storage DetectorFull 1k x 1k 2 dimensional detector system Delivered at the end of the Project

25 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 XCS instrument located in Hutch 4 X-ray beam focusingBe lens system Offset monochromatorA large offset monochromator to permit ‘independent’ operation of XPCS as well as permit beam sharing, including vacuum beam transport Multi-circle diffractometer X-ray pulse split and delay Beam diagnosticsComplete diagnostic suite Control systemComplete control system and data acquisition and storage DetectorFull 1k x 1k 2 dimensional detector system Delivered at the end of the Project

26 J. B. Hastings jbh@slac.stanford.edu LUSI Overview LCLS FAC March 20, 2007 Schedule (milestones) CD-1 July 13, 2007 Conceptual design CD-2aDecember 3, 2007 Baseline established (Phase I) CD-3aMarch 31, 2008Construction start (Phase I) CD-4aFebruary 8, 2010Phase I complete CD-2bOctober 1, 2009Baseline established (Phase II) CD-3bMarch 31, 2010 Construction start (Phase II) CD-4bMarch 30, 2012Project complete Phase I Early FinishOctober 30, 2009 CD-1 July 13, 2007 Conceptual design CD-2aDecember 3, 2007 Baseline established (Phase I) CD-3aMarch 31, 2008Construction start (Phase I) CD-4aFebruary 8, 2010Phase I complete CD-2bOctober 1, 2009Baseline established (Phase II) CD-3bMarch 31, 2010 Construction start (Phase II) CD-4bMarch 30, 2012Project complete Phase I Early FinishOctober 30, 2009


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