detection system working group Progress report Convener : B. GALL

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1 Progress report Convener : B. GALL S 3 Workshop / PARIS May 2008

2 X? O - Work at focal plane position (alpha, gamma and electron spectroscopy) - Identification at FP with Bragg chambers - Study the Possibility to work at secondary target with AGATA? > Deap inelastic at Primary target + Coulex at secondary target > Mass and Z Separation in the separator? > Identification with the spectrometer suite of CLARA-PRISMA experiments - Gas Catcher at focal plane and link to DESIR - Other possibilities may still be coming from dedicated collaborations 2

3 Focal plane : Spectroscopy Identification QuickTime et un décompresseur sont requis pour visionner cette image. 3

4 Deliverables of the S3 detectors WG - Focal plane - Study of space needed in the experimental hall.. (done) Fluids - Cabling - Position of electronics - acquisition - Power - Users area - meeting rooms - storage areas - Gamma-ray array - Efficiency optimisation (IPHC). (action carries) - Milestones in this simulation program - presentation of the status of this R&D by A. Khouaja - Study of technical specification and constraints. (writting) - Gamma-ray array - Resolution optimisation (IPHC)...(to be done) - Options / Choices for ToF. (to be done) - Options / Choices for silicon detectors..(to be done) - Preliminary focal plane setup scheme & Mechanical study - Realistic experiment simulation (IPHC) - Choices for S3-FP Electronics - Choices for DAQ systems (AGATA compatible) & Slow control (GANIL compatible) - Optimised focal plane setup description - 1 st day experiments > We need of a perfectly working focal plane to avoid cumulation of problems > use of an existing FP system or a commisionned and well tested one 4

5 Study of space needed in the experimental hall Fluids - Cabling Position of electronics acquisition - Power Users area meeting rooms storage areas 5

6 Possible Cave layout 6

7 Possible Hospital layout 7

8 Deliverables of the S3 detectors WG - Focal plane - Study of space needed in the experimental hall.. (done) Fluids - Cabling - Position of electronics - acquisition - Power - Users area - meeting rooms - storage areas - Gamma-ray array - Efficiency optimisation (IPHC). (action carries) - Milestones in this simulation program - presentation of the status of this R&D by A. Khouaja - Study of technical specification and constraints. (writting) - Gamma-ray array - Resolution optimisation (IPHC)...(to be done) - Options / Choices for ToF. (to be done) - Options / Choices for silicon detectors..(to be done) - Preliminary focal plane setup scheme & Mechanical study - Realistic experiment simulation (IPHC) - Choices for S3-FP Electronics - Choices for DAQ systems (AGATA compatible) & Slow control (GANIL compatible) - Optimised focal plane setup description - 1 st day experiments > We need of a perfectly working focal plane to avoid cumulation of problems > use of an existing FP system or a commisionned and well tested one 8

9 R&D Focal-Plane : GAMMA-ARRAY efficiency optimisation > New detectors / Concepts cubic-box («cube» size, side relative position & shadow effect).. done Plannar Back Optimised low energy window.... done Hexagonal-box concept.... done, need optimisation > Existing detectors Clover-box concept... done, need optimisation Modified Clover-box concept started > Existing expertise on focal plane detectors Extensive simulation done for DSPEC... presentation in our next WG meeting Discussions with CAMBERRA for technical points.... regular meeting Mechanical studies. To be done Prototype definition... To be done Integration studies.. To be done Cost evaluations / support requests 9

10 Deliverables of the S3 detectors WG - Focal plane - Study of space needed in the experimental hall.. (done) Fluids - Cabling - Position of electronics - acquisition - Power - Users area - meeting rooms - storage areas - Gamma-ray array - Efficiency optimisation (IPHC). (action carries) - Milestones in this simulation program - presentation of the status of this R&D by A. Khouaja - Study of technical specification and constraints. (writting) - Gamma-ray array - Resolution optimisation (IPHC)...(to be done) - Options / Choices for ToF. (to be done) - Options / Choices for silicon detectors..(to be done) - Preliminary focal plane setup scheme & Mechanical study - Realistic experiment simulation (IPHC) - Choices for S3-FP Electronics - Choices for DAQ systems (GANIL/AGATA compatible) - Choices Slow control (GANIL compatible) - Optimised focal plane setup description - 1 st day experiments > We need of a perfectly working focal plane to avoid cumulation of problems > use of an existing FP system or a commisionned and well tested one 10

11 FP- definition (july 07 meeting) In the last S3 collaboration meeting held at GANIL on July , the focal plane characteristics have been defined for the different possible use of S3. Following a discussion on key experiments, the following characteristics of S3 have been settled: beam spot : +/- 0.5 x 10 mm Angular acceptance: +/- 80 mrad X and Y Brho acceptance: +/- 10% Variable focal plane (from 50 x 50 mm to???) M/q selection 1/350 resolution Beam rejection: Electric rigidity: <10MV A priori no gas in the separator In the November meeting, the WG confirms that this is realistic but it is still open to discussion the final focal-plane geometry wait for a project decision S 3 Workshop / PARIS May 2008

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