193 results on '"Winick, H."'
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2. A 2-4 nm Linac Coherent Light Source (LCLS) Using the SLAC Linac
3. A 2 to 4 nm High Power FEL on the SLAC Linac
4. Center for X-ray Optics, X-ray Data Booklet
5. SESAME, a third generation synchrotron light source for the Middle East region
6. High brightness photoinjector development at the SLAC Gun Test Facility
7. Introduction to special section on future light sources
8. Transverse emittance measurements from a photocathode RF gun with variable laser pulse length
9. The first insertion devices at SSRL - some personal recollections
10. The Science Case for 4GLS
11. Future possibilities of the Linac Coherent Light Source
12. SESAME, A 3rd Generation Synchrotron Light Source for the Middle East.
13. SESAME: an extended spectral range synchrotron radiation facility in the Middle East based on an upgrade to BESSY I
14. Study of Collective Effects for the PEP Low-Emittance Optics
15. Extending the range of a low energy SR-source to hard X-rays
16. A PRECISION ENERGY CALIBRATION FOR THE CAMBRIDGE ELECTRON ACCELERATOR
17. LATEST DEVELOPMENTS WITH COLLIDING BEAMS IN THE CEA.
18. Early Work with Synchrotron Radiation at Stanford
19. Report of the working group on production and dynamics of high brightness beams
20. Initial commissioning results of the next generation photoinjector
21. Research and development toward a 4.5−1.5 Å linac coherent light source (LCLS) at SLAC
22. Parametric study of an X-ray FEL
23. The LCLS: A fourth generation light source using the SLAC linac
24. Prospects for high power linac coherent light source (LCLS) development in the 1000 Å−1 Å wavelength range
25. The SLAC linac coherent light source
26. Short wavelength FELs using the SLAC linac
27. The SLAC soft X-ray high power FEL
28. A 2 to 4 nm high power FEL on the SLAC linac
29. A high power short wavelength FEL using the SLAC linac
30. SSRL workshop on fourth generation light sources
31. Initial commissioning results of the next generation photoinjector.
32. Prospects for high power linac coherent light source (LCLS) development in the 1000 Å-1 Å wavelength range.
33. SSRL 1990 — status and future plans
34. Design and Performance of the Stanford Synchrotron Radiation Project (SSRP).
35. Synchrotron Radiation Research.
36. PEP as a synchrotron radiation source (invited).
37. Initial Operation of SSRL Wiggler in SPEAR.
38. Experience with Metal and Epoxy Vacuum Chambers and the Development of Alumina Ceramic Vacuum Chambers at the CEA.
39. Initial Operation of SSRL Wiggler in SPEAR
40. The linac coherent light source (LCLS): a fourth-generation light source using the SLAC linac
41. A Study of Spear as a Dedicated Source of Synchrotron Radiation.
42. New PEP workshop for synchrotron radiation.
43. A Low Emittance Configuration for Spear.
44. The Beam Line VI REC-Steel Hybrid Wiggler for SSRL.
45. An All Wiggler and Undulator Synchrotron Radiation Source.
46. A Permanent Magnet Undulator for SPEAR.
47. Performance of the CEA as an e+e- Storage Ring.
48. Dependence of Phase Instabilities on Bunch Length at the CEA.
49. Positron-Electron Multicycle Injection at the CEA Colliding Beam Project.
50. 1st Undulator Operation at SRC
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