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Isobaric analog resonances of $$^{69}$$Zn by thick target inverse kinematics proton resonance scattering

Imai, Nobuaki*; Hirayama, Yoshikazu*; Ishiyama, Hironobu*; Jeong, S.-C.*; Miyatake, Hiroari*; Watanabe, Yutaka*; Makii, Hiroyuki  ; Mitsuoka, Shinichi; Nagae, Daisuke; Nishinaka, Ichiro; Nishio, Katsuhisa  ; Yamaguchi, Kanako*

The isobaric analog resonance of $$^{69}$$Zn was investigated by resonance elastic scattering of p($$^{68}$$Zn,p) with a 5.5 MeV/nucleon $$^{68}$$Zn beam and a thick CH$$_2$$ target at JAEA tandem accelerator facility. Excitation function of the differential cross section of proton elastic scattering was measured around 0 degree in the laboratory frame. Angular momentum, and proton and total widths of the resonance determined using $$R$$-matrix calculation are in good agreement with earlier measurements performed in normal kinematics.



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