研究業績リスト
ジャーナル論文 - rm_published_papers: Scientific Journal
Superconductivity in W5Si3-type compound Nb5Si2Al
公開済 03/11/2025
Japanese Journal of Applied Physics, 64, 113001
Abstract
We discovered a new superconductor Nb5Si2Al (T c= 2.6 K), crystalizing with a W5Si3-type structure.
Field dependent magnetization demonstrated a type-II superconducting behavior.
The μ 0 H c2(T) was described with the GL model rather than the WHH theory, and it did not exceed the Pauli paramagnetic limiting field.
Critical fields μ 0 H c1(0) and μ 0 H c2(0) were estimated to be 1.65 mT and 2.31 T, respectively. 
The sharp specific heat jump C el/γ T c was observed at T c, and the temperature dependence revealed a BCS-type isotropic gap within a weak-coupling regime.
Comparing other superconductors with the W5Si3-type structure in terms of band filling revealed that T c obeyed an empirical relationship.
ジャーナル論文 - rm_published_papers: Scientific Journal
Two-gap superconducting states of LaRu3Si2
公開済 10/2024
Physica C: Superconductivity and its Applications, 625, 1354583 - 1354583
ジャーナル論文 - rm_published_papers: Scientific Journal
Superconducting properties of pt-type and bct-type YRh4B4
公開済 22/06/2023
Superconductor Science and Technology, 36, 8, 085005 - 085005
Abstract
YRh4B4, which exhibits high-$T _{\mathrm{c } }$ superconductivity in the RRh4B4 system, has two types of crystal structures, CeCo4B4 type (pt-type) and LuRu4B4 type (bct-type). Both types of structure have similar $T _{\mathrm{c } }$ (pt-type; $T _{\mathrm{c } }$ = 10.6 K, bct-type; $T _{\mathrm{c } }$ = 9.8 K), but the $\mu_0 H _{\mathrm{ { c2 } } }$ of both compounds is very different, pt-type; $\mu_0 H _{\mathrm{ { c2 } } }$ = 2.50 T and bct-type; $\mu_0 H _{\mathrm{ { c2 } } }$ = 9.85 T. From our results, one can see that the difference in $T _{\mathrm{c } }$ between pt-YRh4B4 and bct-YRh4B4 is mainly caused from the difference of the density of state at Fermi energy. The high-$T _{\mathrm{c } }$ in pt-YRh4B4 is derived from the high Debye temperature caused by vibrations of boron. In contrast, in bct-YRh4B4 it is caused by a stronger electron–phonon coupling than in pt-YRh4B4. Regarding the symmetry of superconductivity, it is suggested that pt-YRh4B4 is a clean limit superconductor and has basically a fully gapped superconducting gap, but is slightly anisotropic from the results of $C_{\textrm {el } } \propto \textrm {exp}( -\Delta / k_{\mathrm{B } } T$) below $T _{\mathrm{c } }$ and $\Delta \gamma (H) \propto H^{0.65}$. However, bct-YRh4B4 is a dirty limit superconductor and has an anisotropic superconducting gap from the results of $C_{\textrm {el } } \propto T^{3}$ below $T _{\mathrm{c } }$ and $\Delta \gamma (H)\propto H$.
ジャーナル論文 - rm_published_papers: Scientific Journal
Superconductivity in a new layered triangular-lattice systemLi2IrSi2
公開済 24/09/2019
New Journal of Physics, 21, 093056
ジャーナル論文 - rm_misc: Others
公開済 2019
Meeting Abstracts of the Physical Society of Japan, 74.1, 1664 - 1664
ジャーナル論文 - rm_published_papers: Scientific Journal
Superconductivity in Carbide Compounds
公開済 2016
Chemical Science Journal, 7, 3, 1000135
ジャーナル論文 - rm_misc: Others
Superconductivity in RTM_4Si_2 (R: rare-earth elements, TM: transition metals)
公開済 26/08/2013
Meeting abstracts of the Physical Society of Japan, 68, 2, 531 - 531
ジャーナル論文 - rm_published_papers: Scientific Journal
Superconductivity in 122 antimonide SrPt2Sb2
公開済 14/05/2013
Superconductor Science and Technology, 26, 7, 075001 - 075001
ジャーナル論文 - rm_published_papers: Scientific Journal
公開済 2013
Dalton Transactions, 42, 44, 15796 - 15804
ジャーナル論文 - rm_published_papers: Scientific Journal
公開済 2013
Physica C: Superconductivity and its Applications, 494, 77 - 79