visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2024-06-03 11:00 
연사  
장소 E6, #3441 
아래와 같이 세미나를 개최하고자 하오니, 관심있는 분들의 많은 참석 부탁드립니다.
 
Date: 11:00 am, 3rd Jun (Mon)
Place: E6, #3441
Speaker: Dr. Hanbit Oh (Department of Physics and Astronomy, Johns Hopkins University)
Title: New high Tc superconductivity and symmetric pseudogap metal in the bilayer nickelate La3Ni2O7-Part1
Abstract: 

Recently, a new class of superconductor with Tc=80K was found in bilayer nickelates La3Ni2O7 under high pressure, being of significant interest in the condensed matter community. Due to the nature of the bilayer and multi-orbital feature, these materials present a unique platform for high-Tc superconductivity compared to any presenting nickelates and cuprates system. At this moment, a pressing challenge is to unravel the intriguing pairing mechanism underlying superconductivity in these materials and elucidate how they differ from old cuprate physics. In the first part of the talk, I present the role of Hund's coupling as a potential key factor for understanding the remarkably high Tc of La3Ni2O7 [1]. Specifically, I demonstrate that the minimal model is derived as a bilayer type-II t-J model within a large Hund-coupling limit, as opposed to the conventional single-orbital bilayer t-J model, where localized dz2 orbitals are simply integrated out [2]. In the second part of the talk, I answer a fundamental question: Can a small Fermi surface phase, which violates the Luttinger theorem, exist and give rise to superconductivity? By introducing a novel controlled theory based on a bilayer model—the ESD t-J model—we demonstrate the viability of such a scenario [3]. Furthermore, we elucidate that the small Fermi surface transitions into an inter-layer s-wave superconductor at low temperature through Feshbach resonance with a virtual Cooper pair, with a surprising doping-induced crossover from Bardeen-Cooper-Schrieffer (BCS) to Bose-Einstein condensation (BEC) at higher hole doping levels. Applying our theoretical framework, we provide a plausible scenario for the La3Ni2O7 materials.

[1] Hanbit Oh and Ya-Hui Zhang, Phys. Rev. B 108 (2023)

[2] Hui Yang*, Hanbit Oh*, Ya-Hui Zhang, arXiv:2309.15095 (2023)

[2] Hanbit Oh, Boran Zhou, Ya-Hui Zhang, arXiv:2405.00092 (2024)

번호 날짜 연사 제목
공지 2025-02-24 16:00    2025년 봄학기 콜로키움 안내
공지 2025-02-27 16:00    2025년 봄 물리학과 특별세미나 (광학/응집물리 분야)
154 2023-05-15 16:00    Role of dark Higgs boson in DM physics and cosmology file
153 2023-05-17 14:00    Optical Response in the multilayer thin films
152 2023-05-17 16:30    Detecting Hidden Photon Dark Matter via the Excitation of Qubits file
151 2023-05-18 16:00    (광학분야 세미나)Dielectric metasurfaces for optimized optical system and spatial light modulators
150 2023-05-19 11:00    (응집물리 세미나)Dipole condensations in Tilted Bose-Hubbard Chains
149 2023-05-22 13:00    Design & Development of Electrochemical Biosensors for the Detection of T2DM Biomarkers
148 2023-05-26 11:00    (응집물리 세미나)Spectral Analyses of Stochastic Charge Trapping in Oxide Heterostructures file
147 2023-05-31 16:00    [High-Energy Theory Seminar] Resurgence and complex Chern-Simons theory
146 2023-06-01 16:00    (광학분야 세미나)Quantum sensing using a squeezed light from hot Rb vapor
145 2023-06-01 16:00    Hall viscosity and topological phenomena
144 2023-06-08 16:00    Thermal decoupling in high-Tc cuprate superconductors
143 2023-06-14 16:00    [CAPP seminar] EMC at CERN file
142 2023-06-14 16:00    [High-Energy Theory Seminar]Vertex algebras and extended operators in 4d N=2 SCFTs
141 2023-06-15 16:00    [CAPP Seminar] Cryogenic electronics for ion traps file
140 2023-06-16 13:00    Quantum critical states under extreme conditions
139 2023-06-22 16:00    [CAPP Seminar] The muon g-2 puzzle file
138 2023-06-22 16:00    [High Energy Physics Seminar] The Branes Behind Generalized Symmetry Operators
137 2023-06-23 11:00    Visualizing orbital quantum phenomena at room temperature
136 2023-06-26 11:00    Quantum computing on magnetic racetracks with flying domain wall qubits
135 2023-06-30 11:00    The Dual Mode Quantum Computer file