Title: Pr
1GANIL/SPIRAL
A.C.C. Villari
A facility for Nuclear, Atomic, Material and
Radiobiology Sciences. Delivering stable (from C
to U) and radioactive ions (from He to Xe) in the
energy range of meV to 90A MeV.
2Stable beams from C to U
5A - 13.0A MeV
SISSI
27A - 95 A MeV
RIB E 25A - 80A MeV
RIB He, N, O, F, Ne, Ar, Kr
E lt 20A keV
E 1.7A - 25A MeV
IRRSUD
3 simultaneous beams at different energies
3GANIL/SPIRAL
New nuclei
New masses
New isomers
Radii measurements
4Radioctive isotopes produced in the UCx target
of SPIRAL2
high intensity light ions
5Fundamental properties, structure,
astrophysics, solid state matter, fundamental
interactions.
Acees to domains requesting intense radioactive
beams, high intensity stable beams and neutrons.
6GANIL, some numbers Personnel 240 (21
physicists) Budget 9M Users 700 (40 out of
France) Beam time 5000 2000 in parallel
Latest European actions EXOGAM VAMOS LISE-2000 S
PIRAL 2 RTD
For SPIRAL 2, the main items For collaboration
are
7A. Mosnier, project leader
A/Q 3
Beam power 300kW
SILHI-deuteron 5mA
ECRIS-HI 1mA
QWSC - LINAC E 14.5A MeV
RFQ - 0.75A MeV
www.ganil.fr/research/developments/spiral2/index.h
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8Dedicated low energy experimental room
Heavily shielded production cave
www.ganil.fr/research/developments/spiral2/index.h
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11Very low energy experimental room
Injection to CIME
CIME resolution
www.ganil.fr/research/developments/spiral2/index.h
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12n
d
UCx
5mA, 1013 f/s (low density version)
d
UCx
0.3mA, 1013 f/s
n
d
IGISOL, well suited for refractory andshort
living isotopes.
He
U,Th... thin fissile target
www.ganil.fr/research/developments/spiral2/index.h
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13Fusion-evaporation and transfer reactions
residues produced by thick target method (ISOL).
p,d,HI
Thick target
Thin target
HI
separator
www.ganil.fr/research/developments/spiral2/index.h
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14- Proposition for a Design Study in the 6th PCRD
- Some considerations (5)
- Need of an intermediate generation facility
- in the horizon of 2008.
- 2. Partners.
- Need of expertise.
- Part of the developments is also important
- for EURISOL and ß beams.
- 5. 2(3) independent beam lines.