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Maximizing $$T_c$$ by tuning nematicity and magnetism in FeSe$$_{1-x}$$S$$_x$$ superconductors

松浦 康平*; 水上 雄太*; 新井 佑基*; 杉村 優一*; 前島 尚行*; 町田 晃彦*; 綿貫 徹*; 福田 竜生; 矢島 健*; 広井 善二*; et al.

Nature Communications (Internet), 8, p.1143_1 - 1143_6, 2017/10

 被引用回数:16 パーセンタイル:13.58(Multidisciplinary Sciences)

A fundamental issue concerning iron-based superconductivity is the roles of electronic nematicity and magnetism in realising high transition temperature ($$T_c$$). To address this issue, FeSe is a key material, as it exhibits a unique pressure phase diagram involving nonmagnetic nematic and pressure-induced antiferromagnetic ordered phases. However, as these two phases in FeSe have considerable overlap, how each order affects superconductivity remains perplexing. Here we construct the three-dimensional electronic phase diagram, temperature ($$T$$) against pressure ($$P$$) and iso-valent S-substitution ($$x$$), for FeSe$$_{1-x}$$S$$_x$$. By simultaneously tuning chemical and physical pressures, against which the chalcogen height shows a contrasting variation, we achieve a complete separation of nematic and antiferromagnetic phases. In between, an extended nonmagnetic tetragonal phase emerges, where $$T_c$$ shows a striking enhancement. The completed phase diagram uncovers that high-$$T_c$$ superconductivity lies near both ends of the dome-shaped antiferromagnetic phase, whereas $$T_c$$ remainslow near the nematic critical point.


Neutron spectroscopic factors of $$^{55}$$Ni hole-states from (p,d) transfer reactions

Sanetullaev, A.*; Tsang, M. B.*; Lynch, W. G.*; Lee, J.*; Bazin, D.*; Chan, K. P.*; Coupland, D.*; Hanzl, V.*; Hanzlova, D.*; Kilburn, M.*; et al.

Physics Letters B, 736, p.137 - 141, 2014/09

 被引用回数:6 パーセンタイル:49.44(Astronomy & Astrophysics)

$$^{55}$$Niの1/2$$^+$$状態は二重閉殻核$$^{56}$$Niの中性子s$$_{1/2}$$軌道が空となった一空孔状態が支配的であると考えられ、したがってその状態の性質は不安定核の殻構造を知る上で重要な情報となる。本論文では、$$^{55}$$Niの1/2$$^+$$状態における一空孔状態の割合となる分光学的因子を測定し、その値を最新の理論計算と比較した結果を報告した。実験はミシガン州立大学の超伝導サイクロトロンを用い、$$p$$($$^{56}$$Ni, $$^{55}$$Ni)$$d$$反応によって調べた。実験の解析の結果、s$$_{1/2}$$の一空孔状態が支配的な1/2$$^+$$状態は3.18MeVに現れ、その分光学的因子は1.0$$pm$$0.2であることがわかった。発表代表者が行った殻模型計算では対応する状態の励起エネルギーが3.75MeVで分光学的因子が1.21と実験値を比較的よく再現するのに対し、グリーン関数による第一原理計算では分光学的因子は1.10と良いものの、励起エネルギーが11.5MeVと実験値からの大きなずれが見られた。


ITER magnet systems; From qualification to full scale construction

中嶋 秀夫; 辺見 努; 井口 将秀; 名原 啓博; 松井 邦浩; 千田 豊; 梶谷 秀樹; 高野 克敏; 礒野 高明; 小泉 徳潔; et al.

Proceedings of 24th IAEA Fusion Energy Conference (FEC 2012) (CD-ROM), 8 Pages, 2013/03



ENDF/B-VII.1 nuclear data for science and technology; Cross sections, covariances, fission product yields and decay data

Chadwick, M. B.*; Herman, M.*; Oblo$v{z}$insk$'y$, P.*; Dunn, M. E.*; Danon, Y.*; Kahler, A. C.*; Smith, D. L.*; Pritychenko, B.*; Arbanas, G.*; Arcilla, R.*; et al.

Nuclear Data Sheets, 112(12), p.2887 - 2996, 2011/12

 被引用回数:1155 パーセンタイル:0.01(Physics, Nuclear)



Application of snow nanograin targets for the generation of fast ions in femtosecond laser plasma

Faenov, A. Y.; Magunov, A. I.*; Pikuz, S. A.*; Gasilov, S. V.*; Skobelev, I. Yu.*; Palchan, T.*; Zigler, A.*; Henis, Z.*

Journal of Experimental and Theoretical Physics, 107(3), p.351 - 355, 2008/09

The energy of the directed motion of multiply charged ions produced when solid targets are exposed by low-contrast femtosecond laser pulses with low intensities. The measurements are based on the recording of spatially resolved X-ray spectra for H- and He-like Oxygen ions in the target plane. Analysis of the He- and H-like ions line profiles has revealed fractions of accelerated ions in plasma with energies from several to several tens of kiloelectron volts. We show that using a layer of frozen nanometer-size water droplets as the targets leads to an effective absorption of laser pulses and a twofold rise in the energy (to 0.1 MeV) of He-like oxygen ions compared to the use of solid targets.


Generation of fast ions by an efficient coupling of high power laser into snow nanotubes

Palchan, T.*; Henis, Z.*; Faenov, A. Y.; Magunov, A. I.*; Pikuz, S. A.*; Gasilov, S. V.*; Skobelev, I. Yu.*; Zigler, A.*

Applied Physics Letters, 91(25), p.251501_1 - 251501_3, 2007/12

 被引用回数:12 パーセンタイル:49.53(Physics, Applied)

Generation of fast ions in snow nanotubes irradiated by femtosecond laser pulses in the intensity range of 10$$^{16}$$ - 10$$^{17}$$ W/cm$$^{2}$$ was investigated. The fast ion energy was measured through X-ray emission spectra of multicharged ions of oxygen. The profile of the He-$$beta$$ and Ly-$$alpha$$ in He-like and H-like oxygen lines demonstrates a significant broadening, which may indicate generation of fast He-like and H-like ions with energies of up to 100 keV.

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