Presentation is loading. Please wait.

Presentation is loading. Please wait.

Preliminary NML RadiaBeam Transverse Profile Monitor Initial Testing at A0 Alex Lumpkin Bob Flora Congcong Tan James Santucci Jinhao Ruan Randy Thurman-Keup.

Similar presentations


Presentation on theme: "Preliminary NML RadiaBeam Transverse Profile Monitor Initial Testing at A0 Alex Lumpkin Bob Flora Congcong Tan James Santucci Jinhao Ruan Randy Thurman-Keup."— Presentation transcript:

1 Preliminary NML RadiaBeam Transverse Profile Monitor Initial Testing at A0 Alex Lumpkin Bob Flora Congcong Tan James Santucci Jinhao Ruan Randy Thurman-Keup Yin- e Sun Brad Tennis Elias Lopez Ryan Montiel Dallas Heikkinen Jim Fitzgerald Jim Galloway John Seraphin 2010 September 29 Bob Goodwin Mike Kucera

2 Ce:YAG OTR Virtual Target Zoom Lens Camera Actuator Mirrors Filter Wheel The “A0 RadiaBeam” project objective is to evaluate transverse beam profile monitors proposed for the NML Low Energy Beamlines. A0 was simply chosen as a convenient test bed and RadiaBeam was chosen on the merits of their modular IBIS (Integrated Beam Imaging System) design proposal. Thin metallic foil screens for Optical Transition Radiation (OTR) and Ce:YAG single ‐ crystal scintillators are being investigated along with all supporting mechanical, electronic, and optical systems. The project goal is to move from prototype evaluation into production for NML.NML waBeam was

3 16 lines/mm Reference Black White 48% modulation fully zoomed‐out 18x18 mm field of view, resolution in excess of 15 line pairs per mm (at 20% contrast) Resolution: σ =14 µm

4 29 lines/mm Reference Black White 50% modulation Resolution: σ = 7 µm Zoom to 5 mm Zoom efficiency = 58%

5 Virtual Target 15 mm LED LED YAG Screen Camera Virtual Target LED Camera Z matched

6 First Light 10 bunches on YAG Beam Dark Current YAG edge

7 Small Round Beam 242 µm 100 pC on YAG

8 Narrow Beam Stripe 131 µm 100 pC on YAG

9 Short Flat Beam 60x96 µm 20 pC on YAG

10 ZOOM 1 mm 197 pix or 5.08 µm/pix

11 Zoom In 46 µm

12 Low Charge 15 pC We easily measured single bunch beams less than 15 pC with sigma widths of ~50 µm.

13 Repeatability (with beam) 5 withOUT actuation: ~±2 pixels 5 WITH actuation: ~±2 pixels 2 sets of 5 measurements need to make more measurements just using the LED illumination

14 Conclusion What we DID measure: 46 µm 46 µm sigma beam 15 pC 15 pC single bunch What we did NOT find: saturation the YAG saturation point melting the OTR melting point

15 Possible Improvements Replace Virtual Target with 4th position Calibration Target Requires binary weighted actuators Use annular LED to illuminate Calibration Target or fixed beam splitter with LED Zoom lens needs position read back for zoom, aperture, and focus. Eliminate bearing over-constraint (use gimbal bearings and relaxed clearance) needs to include solenoid & bracket mounted and wired with mounted connector. limit switches need to be calibrated and wired with mounted connector finger pinch shield needs to be broken up into 3 2π/3 pieces foils need to be delivered mounted and pre-baked. Vacuum cross and optical assembly need to be joined with a bolted flange. must include an integral ridged backbone each cross needs to be delivered as a completely assembled & functional package

16 Bergoz Bergoz In-flange Integrating Current Transformer

17 Unfiltered Signal

18 50 MHz Low Pass 250 MHz Digitizer 62 data points / bunch


Download ppt "Preliminary NML RadiaBeam Transverse Profile Monitor Initial Testing at A0 Alex Lumpkin Bob Flora Congcong Tan James Santucci Jinhao Ruan Randy Thurman-Keup."

Similar presentations


Ads by Google