visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
seminar Date  
Date & Time  
Venue  
Speaker  

“Progress in the comparison of ARPES to DMFT for d and f strongly correlated electron systems”

 

 Dr. Jonathan Denlinger, Lawrence Berkeley National Lab

 Mar. 2nd (Thu), 4:00 p.m , #1323(E6-2. 1st fl.)

 

The comparison of angle-resolved photoemission (ARPES) to dynamical mean field theory (DMFT) electronic structure calculations is reviewed for three correlated electron systems of V2O3, CeCoIn5 and SmB6. The electronic structure of metallic phase V2O3, key to understanding its various metal-insulator transitions with temperature, doping and pressure, is revealed by ARPES to have a d-orbital band filling that is inconsistent with a 2007 DMFT model of correlation-enhanced orbital polarization, but is thematically consistent with more recent DMFT calculations stressing full charge-self-consistency.

   The Kondo lattice system CeCoIn5 is shown to exhibit itinerant f-electron participation in the localized-like 3D Fermi surface topology consistent with the low energy scale description of DMFT calculations, and with a temperature-dependence that extends far above the transport coherence temperature of T*~45K. 

   Finally, the temperature-dependent evolution of the bulk 4f electronic structure of mixed-valent SmB6 revealed by ARPES and DMFT identifies an important role in f-p hybridization assistance to the metal-insulator transition (MIT) beyond the minimal two-band models of f-d hybridization.  The current status of the topological insulator scenario for the SmB6 in-gap surface states is also reviewed.

 

Contact: Yeong Kwan Kim (Tel. 2516, yeongkwan@kaist.ac.kr)

번호 seminar Date Venue 제목
공지     Spring 2019: Physics Seminar Serises
공지     Spring 2019: Physics Colloquium
공지   Seminar Room #1323  Fall 2017: Physics Seminar Serises
공지   Seminar Room 1501  Fall 2017: Physics Colloquium
125     THE FIRST WEDNESDAY MULTIDISCIPLINARY FORUM file
124   Natual Scien Bldg.(E6)m #1501  Physics Colloquium : 2016 Fall file
123   May 19 (Thu) 4PM  Nonlinear/quantum optical effect in silicon nano-photonics
122   Lecture Hall, College of Natural Sciences [#1501,E6-2]  Topological Defects and Phase Transitions
121   Lecture Hall, College of Natural Sciences [#1501,E6-2]  Topological Defects and Phase Transitions
120   Lecture Hall, College of Natural Sciences [#1501,E6-2]  Topological Defects and Phase Transitions
119   KI Blgd.(E4), Lecture Room Red B501 (5F)  First Principles Approaches for Intermolecular Interactions: From Gas-Phase Dimers to Liquid Water and Molecular Crystal Polymorphism file
118   KAIST Natural Science Building (E6-5), EDU 3.0 Room(1st fl.)  Relational Logic (with applications to Quantum Mechanics, String Theory, Cosmology, Neutrino Oscillations, Statistical Mechanics)
117   KAIST Natural Science Building (E6-2), RM #4314  Radio frequency engineering
116   E6. #1501(1st fl.)  Graphene analogue in (111)- BaBiO3 bilayer heterostructures for topological electronics
115   E6. #1501(1st fl.)  Aperiodic crystals in low dimensions
114   E6-2. 5st fl. #1501  Spectroscopic studies of iron-based superconductors : what have we learned?
113   E6-2. 2nd fl. #2501  Ultrafast X-ray Studies on Dynamics Matter in Extreme Conditions
112   E6-2. 1st fl. #1501  Topological phases of matter in nonequilibrium: Topology of the Wannier-Stark ladder
111   E6-2. 1st fl. #1501  Jan. Switching handedness of of chiral solitons in Z4 topological insulators
110   E6-2. 1st fl. #1501  Interference of single charged particles without a loop and dynamic nonlocality
109   E6-2. 1st fl. #1501  Cotunneling drag effect in Coulomb-coupled quantum dots
108   E6-2. 1st fl. #1501  Theoretical Overview of Iron-based superconductors and its future
107   E6-2. 1st fl. #1323  Confinement of Superconducting Vortices in Magnetic Force Microscopy
106   E6-2. 1st fl. #1323  “Hybrid quantum systems with mechanical oscillators”