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Brenda Dingus Jan 2005 New Laser Calibration Status  New Laser vs Old Laser  Safety  Pond Data  Outrigger Data  How to Combine?

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Presentation on theme: "Brenda Dingus Jan 2005 New Laser Calibration Status  New Laser vs Old Laser  Safety  Pond Data  Outrigger Data  How to Combine?"— Presentation transcript:

1 Brenda Dingus Jan 2005 New Laser Calibration Status  New Laser vs Old Laser  Safety  Pond Data  Outrigger Data  How to Combine?

2 Brenda Dingus Jan 2005 Awesome New Laser NEWOLD Nd YAG laserNitrogen laser Solid State (no consumables) Gas Tube (replace ~1/year) 0.2 nsec pulse2-4 nsec pulse 532 nm~470 nm 26 microJoules/pulse~100 microJoules/pulse 3 sq mm beam80 sq mm beam 50-500 pulses/sec<10 pulses/sec

3 Brenda Dingus Jan 2005 SAFETY  Class 3b laser  Due to high intensity of laser, a single pulse specularly reflected into the eye is hazardous.  Requires LANL Integrated Work Document (IWD)  Safety Interlock on Plexiglass Cover  Hazard light on outside of shed  DO NOT ENTER LASER SHED, IF YOU HAVE NOT SIGNED IWD  If you want to sign IWD, you must  Take LANL Laser Safety for Class 3b & 4  Have LANL HSR approved eye exam  Read IWD

4 Brenda Dingus Jan 2005 Laser Calibration LASER Computer Controlled Optical Filter Wheel Computer Controlled Optical Fiber Switch Optical Fiber ~ 30 Fibers to Pond & ~ 30 Fibers to Outriggers Computer Controlled Delay Generator Prompt Pulse To Common Stop of Time to Digital Converter Monitor Photodiode To Front End Board & TDC

5 Brenda Dingus Jan 2005 Laser Light Output Stability Time (hours) Photodiode hitot (ch) Pond Calibration of 1000 pulses @100 Hz x 35 filter wheel positions x 30 laser balls takes ~12 hours Each ball takes ~24 minutes Photodiode hitot varies by <5 ch in 24 minutes Still need to calibrate photodiode hitot

6 Brenda Dingus Jan 2005 Timing Stabile of Delay Generator Timing of monitor photodiode shows no skips even for short time intervals Long term stability also < 0.5 nsec Time (hours)Photodiode histart (ch)

7 Brenda Dingus Jan 2005 Pond Calibration Hi or Lo Start Hi Lo Hi or Lo ToT  30 laser balls in pond  Central balls can calibrate ~30 top layer pmts to several 1000 pes and ~100 top layer pmts up to several 100 pes Typical Top Layer Slewing Curve

8 Brenda Dingus Jan 2005 Outrigger Calibration  Laser is bright!  Combine 30 fibers entering laser shed to 3 fibers coming out of optical switch  Each of 3 fibers requires different delay due to different cable and fiber lengths  Additional optical filter is required for most outriggers  29 outriggers need 10 -3 x light sent to pond ball  121 outriggers need 10 -2 x light sent to pond ball  19 outriggers need 10 -1 x light sent to pond ball  4 outriggers need 1 x light sent to pond ball

9 Brenda Dingus Jan 2005 How to Combine?  What is relative offset between top/bottom/outriggers?  Current monitor histogram looks problematic.


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