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Status of the experiment at KEKB for the hybrid targets Junji Urakawa instead of T.Takahashi KEK Positron Workshop Durham 28 October 2009 First test of hybrid target
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R.Chehab/Posipol2008/Hiroshima, june 20082 POSITRON SOURCES USING CHANNELING FOR ILC & CLIC THE BASIC SCHEME FOR ILC & CLIC e-e- CrystalAmorphous e +, e -, e-e- e+e+ “x” meters Only the photons are impinging on the converter: that limits the energy deposition in the amorphous target. The yield is less than if the particles coming from the crystal were also impinging on the amorphous target RadiatorConverter
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R.Chehab/Posipol2008/Hiroshima, june 20083 POSITRON SOURCES USING CHANNELING FOR ILC & CLIC PROPOSED POSITRON TARGET FOR CLIC e-e- Crystal Amorphous e +, e -, g g e-e- e+e+ 2 m (5 GeV) W: 1.4 mm thick W: 10 mm thick With an incident beam of 2.34 10 12 e-/pulse, we expect 2.1 10 12 e+/pulse at 270 MeV (pulse of 156 ns) Or 6.7 10 9 e+/bunch PEDD can be well below damage threshold for CLIC
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300Hz generation for ILC
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Hybrid Target for the ILC KEKB LINAC – E(beam) : 8GeV – Bunch Charge: ~nC – Repetition : up to 50Hz (may limited by radiation safety ) Good place for the test (except for muti-bunch operation ) 10 GeV 1 mm8 mm
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experimental site KEKB LINAC e+ source Switch yard
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Set up Site Looking up from Down stream
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A TEST at KEKB LINAC 1 To Demonstrate positron yield with the hybrid system heat reduction by hybrid target 2. Detail investigation toward the positron source momentum distribution, angular distribution of e+ w/ a real beam (angular divergence, alignment) and crystal (mosicity),,, JFY2009 JFY2010~
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Status and Preliminary results of first beam test September 21 – 23 2009 All results shown in the following slides are preliminary
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Setup 8GeV e-1mm W crystal Sweeping Magnet 0.96T 0.75m amorphous W 0.4 mm 8 mm Analyzing magnet 5 ~ 20MeV
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Around the magnet 15 hole in the lead shielding ss All charged particles are dumped here when the Sweeping magnet ON Shielding lead bricks
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Data Acquisition Counting room Beam Area PM e+ Beam current Gate ADC e- Goniometers to Align Crystal e+ detector motor Controller
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e+ of the least yield condition Background conditions Sweep mag No Crystal ANA. mag set to 20 MeV No Amorphous e- Sweep mag Crystal W off Aligned ANA. mag set to 20 MeV 0.4mm Amorphous W background ADC counts Signal is well separated from background even with thin converter Signal is well separated from background even with thin converter Preliminary
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positron yield (arb. unit) angle of crystal w.r.t. beam (mr) rot. in vertical plain e sweep mag 0.4mm Rocking curve Well fitted by two Gaussians Channeling + CB? Narrower component is still x 4 wider than the critical angle Preliminary
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positron yield (arb. unit) angle of crystal w.r.t. beam (mr) e sweep mag 0.4mm Rocking curve Preliminary
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data looks likes.. BG Wa 0.4mm Cr off aligned amorphous 0.4mm Cr aligned amorpous 8mm Cr aligned amorphous 8mm Cr not aligned ADC counts number of counts /bin Preliminary
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After BG substraction Wa 0.4mm Cr off aligned amorphous 0.4mm Cr aligned amorpous 8mm Cr aligned amorphous 8mm Cr not aligned ADC counts number of counts /bin 1.9 1.2 Preliminary
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sweeping magnet OFF No Crystal Amorpous 8mm amorpous 8mm Cr aligned amorphous 8mm Cr not aligned ADC counts number of counts /bin 1.07 Preliminary
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Momentum dist. P [MeV/C] e+ yield Preliminary
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Data was taken under various conditons CrystalamorphousSweep magAna mag NO on20MeV aligned0.4mmon20MeV not alinged0.4mmon20MeV not alingedNOon20MeV aligned8mmon20MeV not alinged8mmon20MeV not alingedNOon20MeV alignedNOon20MeV offNOon20MeV aligned8mmoff20MeV not alinged8mmoff20MeV alignedNOoff20MeV not alingedNOoff20MeV off8mmoff20MeV NO off20MeV on8mmon15MeV 〃 8mmon10MeV 〃 8mmon5MeV Preliminary
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Summray Set up works ! – Very small backgound – DAQ seems good enough already have – many to be analyzed – worth to compare with simulation – some quantitative results in this workshop Hope temperature data in next run (Jan. 2010)
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Background conditions Sweep mag No Crystal ANA. mag set to 20 MeV No Amorphous e- Sweep mag Crystal off Aligned ANA. mag set to 20 MeV No Amorphous background e+ of the least yield condition ADC counts Signal is well separated from background even with NO converter Signal is well separated from background even with NO converter Preliminary
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