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/* NRDF D1823 Data No.4 */
/*===================================================================*/
/* Bibliography */
/*===================================================================*/
\\BIB,4;
D#=D1823;
TITLE=/Cross section and induced polarization in 3He elastic
scattering at 443 MeV/;
PURPOSE=/Angular distributions of the differential cross section and
the induced polarization of 3He elastic scattering on 12C,
58Ni, and 90Zr targets were measured at 443 MeV incident
energy to compare with optical model and Single folding (SF)
model calculations /;
ATH=(J.KAMIYA'1', K.HATANAKA'1,2', T.ADACHI'2', K.FUJITA'1',
K.HARA'1', T.KAWABATA'3', T.NORO'4', H.SAKAGUCHI'5',
N.SAKAMOTO'1', Y.SAKEMI'1', Y.SHIMBARA'2', Y.SHIMIZU'1',
S.TERASHIMA'5', M.UCHIDA'5', T.WAKASA'1', Y.YASUDA'5',
H.P.YOSHIDA'1', M.YOSOI'5');
INST-ATH=(2JPNRCN'1', 2JPNOSA'2', 2JPNTOK'3', 2JPNKYU'4', 2JPNKTO'5');
/* '2' Department of Physics */
/* '3' Center for Nuclear Study */
/* '4' Department of Physics */
/* '5' Department of Physics */
REF=PR/C;
VLP=67(2003)064612;
RCTS=(12C(3HE,3HE)12C, 58NI(3HE,3HE)58NI, 90ZR(3HE,3HE)90ZR);
PHQS=(ANGL-DSTRN, POL, OPT-POTL-PARA);
/*===================================================================*/
/* Experimental Conditions */
/*===================================================================*/
\\EXP,4;
/* 2004-02-04 : Compiled */
RTY=ELA-SCATT;
CHM=ELM;
PHYS-FORM=SLD;
BAC=SELF;
POL-TGT=0%;
ALGN-TGT=0%;
ACC=(CYC'6',CYC'7');
/* '6' Isochronous cyclotron, AVF cyclotron to accelerate 3He to
93 MeV */
/* '7' Ring cyclotron to accelerated 3He to 443 MeV */
INST-ACC=(2JPNRCN'6',2JPNRCN'7');
INC-ENGY-LAB=443MEV;
BEAM-INTNSTY=40NA;
CHRG-INC-ION=2+;
POL-PRJ=0%;
ION-SOURCE=/ Electron cyclotron resonance ion source /;
DET-PARTCL=3HE;
COINC=NO;
ANT-COINC=NO;
DET-SYS=(MAG'8',MWDC'9',SCT'10',MWPC'11',TOF'12');
/* '8' To analyze momentum of 3He (Grand Raiden spectrometer) */
/* '9' To measure position s and angles of particles */
/* '10' Delta-E plastic scintillator */
/* '11' To measure particles scattered from analyzer */
/* '12' To identify 3He by the time of flight between trigger
signals and rf pickup of AVF cyclotron */
ERS-DET=190KEV'13';
/* '13' FWHM, due to the energy spread of cyclotron beam */
ANL=OPT-MODEL'14';
/* '14' using ECIS88/95 (J. Raynal, computer code ECIS-88
NEA-0850/08; computer code ECIS-88 NEA-0850/14) with the
phenomenological Woods-Saxon type potential and the
Single-Folding Model potential */
/* Experimental Method:
- Time-of-flight (To identify 3He by the time of flight between
trigger signals and rf pickup of AVF cyclotron)
- Double scattering (Focal plane polarimeter)
RCT=12C(3HE,3HE)12C;
PHQ=POL;
ENR=X%'23';
/* '23' Enriched targets and natural targets are used. */
THK-TGT=(30MG/CM**2,87[342MG/CM**2)'24';
/* '24' 30 mg/cm2 for enriched target and 87 to 342 mg/cm2 for
natural target */
/*===================================================================*/
/* Descriptive Parameters */
/*===================================================================*/
\\DATA,4;
INC-ENGY-LAB=443MEV;
RSD=12C;
/*===================================================================*/
/* Data Table */
/*===================================================================*/
\DATA;
THTC THTL'25' POL DELTA-POL'26' DATA1'27'
(DEG) (DEG) (NODIM) (NODIM) (NODIM)
6.0400 4.7140 .32413 +-.02594 .23163
6.7800 5.2850 .35663 +-.02192 .23139
7.5150 5.8650 .53801 +-.02186 .23104
8.2500 6.4345 .61463 +-.02219 .23075
8.9800 7.0050 .56501 +-.01879 .23045
9.7100 7.5750 .37526 +-.01526 .23010
10.4400 8.1460 .21917 +-.02022 .23010
11.1800 8.7240 .17945 +-.02232 .22916
11.9100 9.2960 .21835 +-.02134 .22916
12.6500 9.8740 .23432 +-.01688 .22828
13.3800 10.4460 .22621 +-.01960 .22828
14.1200 11.0240 .44638 +-.02372 .22722
14.4900 11.3140 .55942 +-.02069 .22692
14.8500 11.5960 .60451 +-.02958 .22722
15.2200 11.8860 .63681 +-.02656 .22692
15.9600 12.4640 .66376 +-.02863 .22575
16.6900 13.0360 .62857 +-.03063 .22575
17.4200 13.6140 .58229 +-.02840 .22445
18.1500 14.1860 .48342 +-.02898 .22445
18.8900 14.7640 .36897 +-.03669 .22304
19.6200 15.3360 .23847 +-.03893 .22304
20.3500 15.9140 .23135 +-.03573 .22157
21.0800 16.4860 .18573 +-.04197 .22157
\END;
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