유재준 교수
Jae-Joon Yoo
서울대학교 물리천문학부 · 물리·천문학
연구실 소개
유재준 교수의 연구실은 전자구조와 결정학적 상전이를 중심으로 한 강한 상호작용 물질의 전도성 및 자기적 성질을 밀도함수이론 기반의 정밀계산과 실험을 융합하여 연구합니다. 특히 코발트산화물계 및 구리산화물계의 상전이, 전자-음향파 상호작용, 그리고 2차원 톱로지적 물질에서의 페르미면 불안정성과 관련된 메커니즘을 규명하고자 하며, 나노스케일에서의 전자적 상호작용과 표면 상태의 공간적 비균일성에 대한 고해상도 분석도 수행하고 있습니다. 이는 고온초전도체, 톱로지컬 절연체, 그리고 나노인터페이스 전자구조의 이해에 기여합니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15Body-centered tetragonal ${\mathrm{La}}_{2}$${\mathrm{CuO}}_{4}$ is shown to have its electronic structure and properties dominated by the layered in-plane Cu-3d--O-2p interactions. A strong Fermi surface instability along [110] with \ensuremath{\Vert}q\ensuremath{\Vert}=2${k}_{\mathrm{F}}$ leads, via a soft-phonon mode, to the observed orthorhombic phase and accounts for its semiconducting properties. The addition of divalent metals, i.e., Ba, Sr, suppresses the instability and stabilizes the t
The origin of the electric-field gradients (EFG) at nuclear sites in the high-${\mathit{T}}_{\mathit{c}}$ superconductor ${\mathrm{YBa}}_{2}$${\mathrm{Cu}}_{3}$${\mathrm{O}}_{7}$ is investigated theoretically by means of highly precise local-density full-potential linearized-augmented-plane-wave calculations. In all cases considered (i.e., at Cu, O, Ba, and Y nuclei), the theoretical predictions for the principal axis ${\mathit{V}}_{\mathit{z}\mathit{z}}$ and the anisotropy parameter \ensuremath
With one of the highest intrinsic magnetic moments $(10.6\phantom{\rule{0.16em}{0ex}}{\ensuremath{\mu}}_{B}/\mathrm{atom})$ among the heavy rare-earth elements, dysprosium exhibits a rich magnetic phase diagram, including several modulated magnetic phases. Aided by the Ruderman-Kittel-Kasuya-Yosida interaction, the magnetic modulations propagate coherently over a long range. Neutron diffraction experiments were performed to determine the microscopic magnetic origin of the field induced phases in
Abstract Based on first-principles density-functional theory (DFT) calculations, we report that the transition-metal bis-dithiolene, M 3 C 12 S 12 ( M = Mn and Fe), complexes can be a two-dimensional (2D) ferromagnetic insulator with nontrivial Chern number. Among various synthetic pathways leading to metal bis-dithiolenes, the simplest choice of ligand, Benzene-hexathiol, connecting metal cations to form a Kagome lattice is studied following the experimental report of time-reversal symmetric is
Using elastic neutron scattering on single crystals of ${\text{La}}_{1\ensuremath{-}x}{A}_{x}{\text{CoO}}_{3}$ ($A={\text{Ca}}^{2+}$, ${\text{Sr}}^{2+}$, and ${\text{Ba}}^{2+}$), we found the development of magnetic superstructures below the global magnetic transition to be strongly dependent on the size of the $A$-site dopant, $⟨{r}_{A}⟩$, in an unusual way. Upon reducing the $⟨{r}_{A}⟩$ (i.e., as with Ca doping), only a commensurate ferromagnetic cluster phase is evident. On expanding the $⟨{r
We mapped spatially varying intramolecular electronic structures on a pentacene-gold interface using scanning tunneling spectroscopy. Along with ab initio calculations based on density functional theory, we found that the directional nature of the d orbitals of Au atoms plays an important role in the interaction at the pentacene-gold contact. The gold-induced interface states are broadened and shifted by various pentacene-gold distances determined by the various registries of a pentacene molecul
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