Experimental Study of High-Spin States in Deformed Odd-Odd 180 Ir

  • High spin states in deformed odd-odd 180Ir have been investigated using the 154Sm (31P, 5nγ)180Ir reaction through the measurements of excitation functions at 150, 155, 160, 165 and 170 MeV beam energies, K X-γ and γ-γ coincidences at 160 MeV. A new level scheme composed of 5 rotational bands has been established. According to the band structure characteristics and the deduced in band B(M1)/B(E2) ratios, the quasiparticle configurations and spin and parity have been proposed to the observed bands. The neutron AB crossing is observed at hωc≈0.26 MeV for the π1/2[541]⊙ν1/2[521] and π1/2[541]⊙ν5/2[512] bands. This AB crossing frequency is close to that in the ν5/2[512] band of 179Os indicating the loss of intruder nature of the π1/2 - orbit. Gradual alignment gain in both the π9/2[514]⊙ν7/2+[633] and π9/2ν5/2[512] bands is observed which is similar to the low spin anomaly in alignment in the πh11/2,πd5/2 and πi13/2 bands of neighboring Ir and Re isotopes. Different alignment properties have been discussed in the framework of cranked shell model, and a larger quadrupole deformation is suggested for the bands with π9/2[514] orbit involved.
  • [1] . Jain A K, Sheline R K, Sood P G et al. Rev. of Mod. Phys.,1998,70:843 2. ZHANG Y H, ZHAO Q Z, ZHOU X H et al. High Energy Phys. and Nucl. Phys.,1997,21(5):393(in Chinese)(张玉虎,赵庆中,周小红等.高能物理与核物理,1997,21(5):393) 3. ZHANG Y H, ZHAO Q Z, ZHU S F et al. Phys. Rev.,1999,C60:044311 4. ZHANG Y H, ZHANG S Q, HUANG W X et al. High Energy Phys. and Nucl. Phys.,2000,24(4):369(in Chinese)(张玉虎,张双全,黄文学等.高能物理与核物理.2000,24(4):369)5. ZHANG Y H, Hayakawa T, Oshima M et al. High Energy Phys. and Nucl. Phys.,2000,24(12):1123(in Chinese)(张玉虎, Hayakawa T, Oshima M 等.高能物理与核物理,2000,24(12):1123)6. ZHANG Y H, Hayakawa T, Oshima M et al. Eur. Phys. J.,1999,A5:345 7. Firestone R B, Shirley V S, Baglin C M et al. Table of Isotopes,1996,2:2165 8. JIN H Q, Riedinger L L, Bingham C R et al. Phys. Rev.,1996,C53:2106 9. Kaczarowski R, Garg U, Kunk E G et al. Phys. Rev.,1992,C45:103 10. Lieder R B, Neskakis A, Skalski J et al. Nucl. Phys.,1988:A476:545 11. Bark R A, Hagemann G B, Jensen H J et al. Nucl. Phys.,1995:A591:265 12. Kreiner A J, Davidson J, Davidson M et al. Phys. Rev.,1987,C36:2309 13. Dracoulis G D, Fabricius B ,Byrne A P et al. Phys. Lett.,1991,B257:21 14. Bark R A, Dracoulis G D, Stuchbery A E et al. Nucl. Phys.,1989:A501:157 15. Bark R A. J. Phys.,1991,G17:1209 16. Wells J C, Johnson N R, Baktash C et al. Phys. Rev.,1989,C40:725 17. Bengtsson R. Nucl. Phys.,1990,A520:201c 18. Wells J C, Johnson N R, Baktash C et al. Phys. Rev.,1987,C36:43119. Nazarewicz W, Riley M A, Garrett J D. Nucl. Phys.,1990,A512:6120. YANG C X, WEN S, LI S G et al. Chin. J. Nucl. Phys.,1994,16:22321. Balabanski D L, Lieder R M, Kutsarowa T et al. Nucl. Phys.,1993,A563:129
  • [1] . Jain A K, Sheline R K, Sood P G et al. Rev. of Mod. Phys.,1998,70:843 2. ZHANG Y H, ZHAO Q Z, ZHOU X H et al. High Energy Phys. and Nucl. Phys.,1997,21(5):393(in Chinese)(张玉虎,赵庆中,周小红等.高能物理与核物理,1997,21(5):393) 3. ZHANG Y H, ZHAO Q Z, ZHU S F et al. Phys. Rev.,1999,C60:044311 4. ZHANG Y H, ZHANG S Q, HUANG W X et al. High Energy Phys. and Nucl. Phys.,2000,24(4):369(in Chinese)(张玉虎,张双全,黄文学等.高能物理与核物理.2000,24(4):369)5. ZHANG Y H, Hayakawa T, Oshima M et al. High Energy Phys. and Nucl. Phys.,2000,24(12):1123(in Chinese)(张玉虎, Hayakawa T, Oshima M 等.高能物理与核物理,2000,24(12):1123)6. ZHANG Y H, Hayakawa T, Oshima M et al. Eur. Phys. J.,1999,A5:345 7. Firestone R B, Shirley V S, Baglin C M et al. Table of Isotopes,1996,2:2165 8. JIN H Q, Riedinger L L, Bingham C R et al. Phys. Rev.,1996,C53:2106 9. Kaczarowski R, Garg U, Kunk E G et al. Phys. Rev.,1992,C45:103 10. Lieder R B, Neskakis A, Skalski J et al. Nucl. Phys.,1988:A476:545 11. Bark R A, Hagemann G B, Jensen H J et al. Nucl. Phys.,1995:A591:265 12. Kreiner A J, Davidson J, Davidson M et al. Phys. Rev.,1987,C36:2309 13. Dracoulis G D, Fabricius B ,Byrne A P et al. Phys. Lett.,1991,B257:21 14. Bark R A, Dracoulis G D, Stuchbery A E et al. Nucl. Phys.,1989:A501:157 15. Bark R A. J. Phys.,1991,G17:1209 16. Wells J C, Johnson N R, Baktash C et al. Phys. Rev.,1989,C40:725 17. Bengtsson R. Nucl. Phys.,1990,A520:201c 18. Wells J C, Johnson N R, Baktash C et al. Phys. Rev.,1987,C36:43119. Nazarewicz W, Riley M A, Garrett J D. Nucl. Phys.,1990,A512:6120. YANG C X, WEN S, LI S G et al. Chin. J. Nucl. Phys.,1994,16:22321. Balabanski D L, Lieder R M, Kutsarowa T et al. Nucl. Phys.,1993,A563:129
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ZHANG Yu-Hu. Experimental Study of High-Spin States in Deformed Odd-Odd 180 Ir[J]. Chinese Physics C, 2002, 26(6): 582-588.
ZHANG Yu-Hu. Experimental Study of High-Spin States in Deformed Odd-Odd 180 Ir[J]. Chinese Physics C, 2002, 26(6): 582-588. shu
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Received: 2001-07-15
Revised: 1900-01-01
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Experimental Study of High-Spin States in Deformed Odd-Odd 180 Ir

    Corresponding author: ZHANG Yu-Hu,
  • Institute of Modern Physics, The Chinese Academy of Sciences, Lanzhou 730000, China2 Japan Atomic Energy Research Institute, Tokai, Ibaraki 319-1195, Japan3 Chiba University, Inage-ku, Chiba 263-8512, Japan4 Chiba Institute of Technology, Narashino, Chiba 275-0023, Japan5 Institute of Physics and Tandem Accelerator Center, University of Tsukuba, Ibaraki 305-0006, Japan

Abstract: High spin states in deformed odd-odd 180Ir have been investigated using the 154Sm (31P, 5nγ)180Ir reaction through the measurements of excitation functions at 150, 155, 160, 165 and 170 MeV beam energies, K X-γ and γ-γ coincidences at 160 MeV. A new level scheme composed of 5 rotational bands has been established. According to the band structure characteristics and the deduced in band B(M1)/B(E2) ratios, the quasiparticle configurations and spin and parity have been proposed to the observed bands. The neutron AB crossing is observed at hωc≈0.26 MeV for the π1/2[541]⊙ν1/2[521] and π1/2[541]⊙ν5/2[512] bands. This AB crossing frequency is close to that in the ν5/2[512] band of 179Os indicating the loss of intruder nature of the π1/2 - orbit. Gradual alignment gain in both the π9/2[514]⊙ν7/2+[633] and π9/2ν5/2[512] bands is observed which is similar to the low spin anomaly in alignment in the πh11/2,πd5/2 and πi13/2 bands of neighboring Ir and Re isotopes. Different alignment properties have been discussed in the framework of cranked shell model, and a larger quadrupole deformation is suggested for the bands with π9/2[514] orbit involved.

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