DARPE: Search Results
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 /* NRDF D1738 Data No.5                                              */
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 /* Bibliography                                                      */
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 \\BIB,5;
 D#=D1738;
 TITLE=/ Sub-barrier fusion of deformed nuclei in 60Ni+154Sm and
         32S+182W Reactions /;
 ATH=(S.MITSUOKA'1', H.IKEZOE'1', K.NISHIO'1', J.LU'1');
 INST-ATH=(2JPNJAE'1');
 REF=PR/C;
 VLP=62(2000)054603;
 RCTS=(182W(32S,FISSN), 154SM(60NI,FISSN), 182W(32S,3*N)211TH,
       182W(32S,2*N)212TH, 182W(32S,4*N)210TH, 182W(32S,X)210AC,
       182W(32S,X)211AC, 182W(32S,X)208AC, 182W(32S,X)209AC,
       182W(32S,X)209RA, 182W(32S,X)210RA, 182W(32S,X)207RA,
       182W(32S,X)208RA, 182W(32S,X)208FR, 182W(32S,X)209FR,
       182W(32S,X)206FR, 182W(32S,X)207FR, 154SM(60NI,3*N)211TH,
       154SM(60NI,2*N)212TH, 154SM(60NI,4*N)210TH, 154SM(60NI,X)210AC,
       154SM(60NI,X)211AC, 154SM(60NI,X)208AC, 154SM(60NI,X)209AC,
       154SM(60NI,X)209RA, 154SM(60NI,X)210RA, 154SM(60NI,X)207RA,
       154SM(60NI,X)208RA, 154SM(60NI,X)208FR, 154SM(60NI,X)209FR,
       154SM(60NI,X)206FR, 154SM(60NI,X)207FR);
 PHQS=(ANGL-DSTRN'2', FISSN-XSECTN, EXC-FUNCT'3');
 /* '2' for fission fragments */
 /* '3' for fusion-evapolation cross section */
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 /* Experimental Conditions                                           */
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 \\EXP,5;
 /* 2002-02-08 : Converted, Mt + On. Data converted to EXFOR E1738
 /* 2003-06-13 : Altered, On */
 PHYS-FORM=SLD;
 BAC=AL;
 THK-BAC=XMG/CM**2'4';
 /* '4' 0.7 micro-meter */
 POL-TGT=0%;
 ALGN-TGT=0%;
 ACC=VDGT;
 INST-ACC=2JPNJAE;
 BEAM-INTNSTY=XMA'5';
 /* '5' 30+-20 particle-nA */
 POL-PRJ=0%;
 COINC=NO;
 ANT-COINC=NO;
 DET-SYS=(MAG,IC'6',SSD'7',TOF'8');
 /* '6' To detect fusion-fission products */
 /* '7' To monitor Rutherford scattering */
 /* '8' To obtain information on fusion-evaporation residue */
 SOLID-ANGL=20MSR;
 ERS-DET=80KEV'9';
 /* '9' for position sensitive strip detector working on 5.486MeV
        alpha particles from an 241Am source */
 MONTR-RCT=/ , Rutherford scattering was monitored at forward angle of
             theta(lab)=45deg by small-area solid-state detector for
             the normalization of the cross section measurements. /;
 EFCN-DET=/ Total efficiency is typically 25% for xn channel and 18%
            for alpha+xn channel in 60Ni+154Sm system. /;
 /* Experimental Method:
    - Time-of-flight (To obtain information on fusion-evaporation
      residue)
 /* 2006-09-05 : Altered, At. Re-digitized */
 RCT=182W(32S,4*N)210TH;
 PHQ=EXC-FUNCT'25';
 /* '25' for fusion-evapolation cross section */
 ENR=94.5%;
 CHM=ELM;
 THK-TGT=0.4MG/CM**2;
 DET-PARTCL=(ALPHA'27',ALPHA'26');
 /* '27' Alpha from 206Ra */
 /* '26' Alpha from 210Th */
 ANL=STATIST-MODEL'28';
 /* '28' HIVAP, See [W.Reisdorf and M.Schadel,
         Z.Phys.A343(1992)47]. */
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 /* Descriptive Parameters                                            */
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 \\DATA,5;
 SYS-ERR=40%'29';
 /* '29' Uncertainty in estimations of recoil mass separator
         transmission and angular distribution of evaporation residue
 CMPD=214TH;
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 /* Data Table                                                        */
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 \DATA;
 INC-ENGY-CM SIGMA DELTA-SIGMA
 (MEV) (MB) (MB)
 1.271E+02 8.204E-06 +3.870E-06-3.058E-06
 1.292E+02 1.745E-05 +6.058E-06-6.138E-06
 1.314E+02 1.165E-05 +8.378E-06-7.916E-06
 1.335E+02 1.753E-05 +1.102E-05-1.074E-05
 1.357E+02 2.173E-05 +1.025E-05-8.958E-06
 1.379E+02 1.668E-05 +1.048E-05-1.088E-05
 1.400E+02 4.223E-06 +4.492E-06-UNKNOWN
 1.421E+02 7.929E-06 +6.705E-06-6.318E-06
 1.443E+02 4.508E-07 +1.496E-06-UNKNOWN
 \END;
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