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 /* NRDF D1805 Data No.29                                             */
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 /* Bibliography                                                      */
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 \\BIB,29;
 D#=D1805;
 TITLE=/ Proton single-particle strength in 19F measured via the
         18O(d,n) reaction /;
 ATH=(A.TERAKAWA'1', H.ORIHARA'1', M.OURA'1', M.HOSAKA'1', H.SUZUKI'1',
      K.KUMAGAI'1', Y.KIKUCHI'1', T.TOHEI'2', T.NAKAGAWA'2',
      J.TAKAMATSU'2', A.NARITA'2', K.HOSOMI'2', K.ISHII'3', G.C.JON'4',
      K.MIURA'5', H.OHNUMA'6');
 INST-ATH=(2JPNTOH'1', 2JPNTOH'2', 2JPNTOH'3', 3CHFCHF'4', 2JPNTOI'5',
           2JPNCIT'6');
      /* '1' Cyclotron and Radioisotope Center */
      /* '2' Department of Physics */
      /* '3' Department of Quantum Science and Energy Engineering */
      /* '4' Institute of Physics, Academia Sinica, Nankang, Taipei */
      /* '5' Department of Physics */
      /* '6' Department of Physics */
 REF=PR/C;
 VLP=66(2002)064313;
 RCTS=18O(D,N)19F;
 PHQS=(ANGL-DSTRN, SPEC-FCTR, SPEC-FCTR'7', OPT-POTL-PARA);
 /* '7' Occupation probability */
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 /* Experimental Conditions                                           */
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 \\EXP,29;
 /* 2003-10-07 : Compiled */
 RTY=STRP;
 ENR=98.7%;
 CHM=ELM;
 PHYS-FORM=GAS;
 THK-TGT=1.5MG/CM**2;
 POL-TGT=0%;
 ALGN-TGT=0%;
 ACC=CYC'8';
 /* '8' Isochronous cyclotron, AVF cyclotron */
 INST-ACC=2JPNTOH'9';
 /* '9' Cyclotron and Radioisotope Center (CYRIC) */
 INC-ENGY-LAB=25MEV;
 POL-PRJ=0%;
 DET-PARTCL=N;
 COINC=NO;
 ANT-COINC=NO;
 DET-SYS=(SCT'10',TOF'11');
 /* '10' Liquid organic scintillator NE213 to measrure energies of
         emitted neutron. Efficiency was determined via an activation
         analysis for the 7Li(p,n)7Be reaction. */
 /* '11' CYRIC TOF facility [H.Orihara and T.Murakami, Nucl.
         Instrum. Methods 181(1981)15, H.Orihara et al., Nucl. Instrum.
         Methods Phys. Res. A257(1987)189]. */
 ERS-DET=180KEV;
 ANL=(DWBA'12',ADB-MODEL'13',SHELL-MODEL'14');
 /* '12' Zero-range distorted wave analysis with finite-range and
         nonlocality corrections (DWUCK4) [P. D. Kunz, computer code
         DWUCK.] */
 /* '13' Adiabatic-deuteron breakup approximation (ADBA)
         [R.C.Johnson and P.J.R.Sorper, Phys. Rev. C1(1970)976] to
         assign orbital angular momentum of the transferred proton, and
         to deduce spectroscopic factors. */
 /* '14' To evaluate spectroscopic factor */
 /* Experimental Method:
    - Time-of-flight (CYRIC TOF facility [H.Orihara and T.Murakami,
      Nucl. Instrum. Methods 181(1981)15, H.Orihara et al., Nucl.
      Instrum. Methods Phys. Res. A257(1987)189].)
 RCT=18O(D,N)19F;
 PHQ=SPEC-FCTR;
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 /* Descriptive Parameters                                            */
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 \\DATA,29;
 INC-ENGY-LAB=25MEV;
 TOT-ERR=<15%'15';
 /* '15' Uncertainty in cross section (less than 15%) */
 EMT=N;
 DELTA-DSIGMA/DOMEGA=12%'100';
 /* '100' Uncertainty in cross section due to detection
          efficiency, target thickness etc. */
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 /* Data Table                                                        */
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 \DATA;
 EXC-ENGY J-PTY ISOSPIN SPEC-FCTR'101' FLAG'102,103'
 (MEV) (NODIM) (NODIM) (NODIM) (NODIM)
 0.00 1/2+ X 0.45 1
 0.20 5/2+ X 2.18 2
 1.55 3/2+ X 0.99 3
 4.55 5/2+ X 0.39 4
 5.54 5/2+ X 0.18 5
 6.09 3/2- X 0.15 6
 6.26 1/2+ X 0.28 7
 6.50 3/2+ X 0.13 8
 6.79 3/2- X 0.11 9
 6.93 7/2- X 0.41 10
 7.11 X X 0.21 11
 7.11 X X 0.19 11
 7.54 5/2+ 3/2 1.33 12
 8.06 5/2+ X X 13
 8.30 5/2+ X 0.14 14
 8.59 3/2- X 0.15 15
 8.79 1/2+ 3/2 0.49 16
 9.14 X X 0.09 17
 9.14 X X 0.08 17
 9.67 3/2+ X 0.38 18
 10.31 3/2+ X 0.38 19
 10.56 3/2+ 3/2? 0.18 20
 10.88 5/2+ X 0.15 21
 11.02 X X 0.11 22
 11.02 X X 0.10 22
 11.55 5/2+ X 0.11 23
 11.74 3/2+ 3/2? 0.18 24
 11.22 3/2+ X 0.25 25
 12.86 3/2+ 3/2 0.48 26
 13.34 7/2- 3/2? 0.22 27
 13.75 7/2- 3/2 0.22 28
 \END;
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