DARPE: Search Results
 /*===================================================================*/
 /* NRDF D1873 Data No.4                                              */
 /*===================================================================*/
 /* Bibliography                                                      */
 /*===================================================================*/
 \\BIB,4;
 D#=D1873;
 TITLE=/ 27Al(d,a)25Mg reaction at 14.7 MeV /;
 ATH=(T.YANABU'1', S.YAMASHITA'1', T.NAKAMURA'2', K.TAKAMATSU'2',
      A.MASAIKE'2', S.KAKIGI'2', D.C.NGUYEN'2', K.TAKIMOTO'2');
 INST-ATH=(2JPNKTO'1', 2JPNKTO'2');
      /* '1' Institute for Chemical Research */
      /* '2' Department of Physics, Faculty of Science */
 REF=JPJ;
 VLP=17(1962)914;
 RCTS=27AL(D,ALPHA)25MG;
 PHQS=(ANGL-DSTRN, XSECTN);
 /*===================================================================*/
 /* Experimental Conditions                                           */
 /*===================================================================*/
 \\EXP,4;
 /* 2004-02-24 : Compiled+Checked, Ic + N.Otuka */
 /* 2009-08-26 : Altered, Nf. AUTHOR (S.Yamashita) corrected */
 /* Related references 
    - T.Yanabu et al., JPJ, 16(1961)2118.
    (Details of beam handling and the methods of measurements of beam
    current and its energy)
    - K.Kimura et al., JPJ, 17(1962)9.
    (Details of beam handling and the methods of measurements of beam
    current and its energy)
 CHM=ELM;
 PHYS-FORM=SLD;
 THK-TGT=0.216MG/CM**2;
 POL-TGT=0%;
 ALGN-TGT=0%;
 ACC=CYC;
 INST-ACC=2JPNKTO;
 INC-ENGY-LAB-RANGE=14.7MEV;
 BEAM-INTNSTY=[0.2UA;
 POL-PRJ=0%;
 DET-PARTCL=ALPHA;
 COINC=NO;
 ANT-COINC=NO;
 DET-SYS=SI'3';
 /* '3' To detect alpha particles from target, solid angle was
        1.06msr. */
 ERS-DET=1.2%'4';
 /* '4' Better than 1.2% */
 /* Comment by compiler: Spin-parity assignments shown in figures and
    this compilation are taken from [P.M. Endt and C.M. Braams, Rev.
    Mod. Phys. 29(1957)683]. However author's comparison between their
    experimental result and prediction based on the two-nucleon pick-up
    theory suggests that the 3.40 MeV level of 25Mg is considered to
    come from the transition to the 9/2+ state rather than to the 3/2-
    state. ENSDF also recoomends 9/2+ for the 3.405 MeV state. */
 /* 2006-10-05 : Altered, Is. Re-digitized */
 RCT=27AL(D,ALPHA)25MG;
 PHQ=ANGL-DSTRN;
 ANL=X'7';
 /* '7' Two-nucleon pick-up theory [M. el Nadi, Phys. Rev.
        119(1960)242] */
 /*===================================================================*/
 /* Descriptive Parameters                                            */
 /*===================================================================*/
 \\DATA,4;
 INC-ENGY-LAB=14.7MEV;
 EXC-ENGY=1.61MEV;
 J-PTY=7/2+;
 /*===================================================================*/
 /* Data Table                                                        */
 /*===================================================================*/
 \DATA;
 THTC DSIGMA/DOMEGA DELTA-DSIGMA/DOMEGA'8'
 (DEG) (UB/SR) (UB/SR)
 2.266E+01 2.687E+02 +-8.785E+00
 3.324E+01 1.731E+02 +-6.934E+00
 4.400E+01 1.178E+02 +-6.009E+00
 5.433E+01 8.501E+01 +-4.163E+00
 6.483E+01 8.091E+01 +-3.257E+00
 7.508E+01 7.685E+01 +-2.773E+00
 8.565E+01 6.491E+01 +-2.311E+00
 9.584E+01 6.638E+01 +-2.773E+00
 1.054E+02 5.073E+01 +-3.236E+00
 1.153E+02 4.295E+01 +-2.773E+00
 1.251E+02 5.505E+01 +-3.698E+00
 1.346E+02 4.356E+01 +-3.698E+00
 1.438E+02 5.011E+01 +-3.236E+00
 1.530E+02 5.064E+01 +-3.236E+00
 1.622E+02 8.876E+01 +-4.560E+00
 \END;
 /*===================================================================*/