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論文

Age-hardening mechanisms of heterogeneous-nanostructured SUS316LN stainless steel fabricated by heavy cold rolling

三浦 博己*; 渡邊 千尋*; 青柳 吉輝*; 大場 洋次郎; 小林 正和*; 吉永 直樹*

Materials Science & Engineering A, 833, p.142531_1 - 142531_12, 2022/01

 被引用回数:3 パーセンタイル:45.58(Nanoscience & Nanotechnology)

The nanostructure produced by heavy cold rolling provides tensile strength of 1.9 GPa in SUS316LN austenitic stainless steel, which is further raised up to 2.2 GPa by peak aging at 748 K. Nanostructural observations using electron microscopes, small-angle scattering, and atom probe tomography revealed segregation of solute elements of Mo, Si, and so on at twin and low-angle lamellar boundaries. Finite element calculation demonstrates that this grain-boundary segregation can increase the mechanical strength.

論文

Yrast 6$$^+$$ seniority isomers of $$^{136,138}$$Sn

Simpson, G. S.*; Gey, G.*; Jungclaus, A.*; Taprogge, J.*; 西村 俊二*; Sieja, K.*; Doornenbal, P.*; Lorusso, G.*; S$"o$derstr$"o$m, P.-A.*; 炭竃 聡之*; et al.

Physical Review Letters, 113(13), p.132502_1 - 132502_6, 2014/09

 被引用回数:68 パーセンタイル:91.93(Physics, Multidisciplinary)

Delayed $$gamma$$-ray cascades, originating from the decay of 6$$^+$$ isomeric states, in the very neutron-rich, semimagic isotopes $$^{136,138}$$Sn were observed following the projectile fission of a $$^{238}$$U beam at RIBF, RIKEN. The wave functions of these isomeric states are proposed to be predominantly a fully aligned pair of f$$_{7/2}$$ neutrons. Shell-model calculations, performed using a realistic effective interaction, reproduce well the energies of the excited states of these nuclei and the measured transition rates, with the exception of the $$B(E$$2;6$$^+ rightarrow 4^+$$) rate of $$^{136}$$Sn, which deviates from a simple seniority scheme. Empirically reducing the $$nu f$$$$_{7/2}^{2}$$ orbit matrix elements produces a 4+1 state with almost equal seniority 2 and 4 components, correctly reproducing the experimental $$B(E$$2;6$$^+ rightarrow 4^+$$) rate of $$^{136}$$Sn. These data provide a key benchmark for shell-model interactions far from stability.

論文

Monopole-driven shell evolution below the doubly magic nucleus $$^{132}$$Sn explored with the long-lived isomer in $$^{126}$$Pd

Watanabe, H.*; Lorusso, G.*; 西村 俊二*; Otsuka, T.*; Ogawa, K.*; Xu, Z. Y.*; 炭竃 聡之*; S$"o$derstr$"o$m, P.-A.*; Doornenbal, P.*; Li, Z.*; et al.

Physical Review Letters, 113(4), p.042502_1 - 042502_6, 2014/07

 被引用回数:24 パーセンタイル:76.91(Physics, Multidisciplinary)

A new isomer with a half-life of 23.0(8) ms has been identified in $$^{126}$$Pd at 2406 keV excitation. The proposed spin and parity configuration is 10$$^{+}$$, with maximally aligned configuration of two $$h$$$$_{11/2}$$ neutron hole. $$beta$$-decay from the long-lived isomer was also observed to populated excited states at high spins in $$^{126}$$Ag. The small energy difference between the 10$$^{+}$$ and 7$$^{-}$$ isomers in $$^{126}$$Pd was interpreted in the frame of the monopole shift of the 1$$h$$$$_{11/2}$$ neutron orbit. The effects of the monopole interaction on the evolution of single-neutron energies below $$^{132}$$Sn are discussed in terms of central and tensor forces.

論文

$$1p_{3/2}$$ proton-hole state in $$^{132}$$Sn and the shell structure along $$N$$=82

Taprogge, J.*; Jungclaus, A.*; Grawe, H.*; 西村 俊二*; Doornenbal, P.*; Lorusso, G.*; Simpson, G.*; S$"o$derstr$"o$m, P.-A.*; 炭竃 聡之*; Xu, Z. Y.*; et al.

Physical Review Letters, 112(13), p.132501_1 - 132501_6, 2014/04

 被引用回数:51 パーセンタイル:88.81(Physics, Multidisciplinary)

A low-lying state in $$^{131}$$In, the one-proton hole nucleus with respect to double magic $$^{132}$$Sn, was observed by its $$gamma$$ decay to the beta emitting isomer. The new state, which was populated both in the beta decay of $$^{131}$$Cd and after beta-delayed neutron emission from $$^{132}$$Cd, was identified, at an excitation energy of 1353 keV, as the previously unknown single-hole state with respect to the $$^{132}$$Sn core. Exploiting this crucial new experimental information, shell-model calculations were performed to study the structure of experimentally inaccessible $$N$$=82 isotones below $$^{132}$$Sn. The results evidence a surprising absence of proton subshell closures along the chain of $$N$$=82 isotones. This finding bears consequences on the evolution of the $$N$$=82 shell gap along the r-process path.

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