visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2024-01-26 15:00 
연사  
장소 E6-2 #1323 
물리학과 구성원분들께,
아래와 같이 세미나를 개최하오니 많은 참석 부탁드립니다.
 
- Speaker : Prof. Sang Ho Oh (Department of Energy Engineering, KENTECH Institute for Energy Materials and Devices, Korea Institute of
                Energy Technology)
- Date : 2024.01.26(Fri) 3:00pm
- Place : E6-2  #1323
- Title : "In-situ 4D-STEM studies on surface reconstruction and polarization switching of perovskite oxides"
- Abstract : 
4D STEM is an emerging technique in electron microscopy, enabling the acquisition of convergent electron beam diffraction (CBED) patterns in every pixels in STEM mode. This technique is versatile and finds many useful applications in materials science, where conventional TEM and STEM techniques are unable to characterize. For example, the quantitative interpretation of the CBED pattern can provide detailed information on the crystal symmetry and atomic positions at an Å level, allowing the precise determination of lattice strain and atomic displacement. 4D STEM data, acquired at an optimized condition for ptychography and treated by iterative phase reconstruction algorithms, can be used for atomic-scale potential and charge density mapping. Further, the ptychography of 4D STEM can achieve a good depth resolution in the range of ~2-5 nm once the multislice wave propagation is incorporated into the iterative phase reconstruction process. If all these capabilities of 4D STEM is combined with in-situ TEM experiments, such as heating and electrical biasing, tremendous breakthrough can made in various fields of materials science and solid-state physics. In this seminar, some of our recent (unpublished) works on the surface reconstruction of SrTiO3 (001) at high temperatures and the mapping of field-induced polarization switching of relaxor ferroelectric Ba0.5Sr0.5TiO3 thin films will be presented. 
번호 날짜 연사 제목
공지 2026-03-09 16:00    2026년 봄학기 콜로키움
공지 2026-03-05 16:00    2026년 봄학기 물리학과 특별세미나 (광학/응집물리 분야)
673 2026-08-25 10:30  엄창범 교수(University of Wisconsin-Madison)  Complex Oxide Heterostructures by Design: How did we get here and where are we going? file
672 2026-08-06 16:00  Prof. Yannis Semertzidis  Coherent Detection at the Quantum Frontier: From Axion Dark Matter to Precision Spin Physics file
671 2026-08-05 15:00  Dr. Moritz Merklein(University of Sydney)  Tailoring Brillouin Interactions in Integrated Photonic Circuits
670 2026-07-13 11:00  Dr. Claudio Zeni (Microsoft)  Accelerating materials design with AI emulators and generators file
669 2026-06-24 13:30  Ms. Hyejin Kim (Cornell University)  Learning Measurement-Induced Phase Transition Using Attention file
668 2026-06-22 16:00  Prof. Jong Yeon Lee (UIUC)  Landscape of Non-equilibrium Phases of Matter file
667 2026-06-18 16:00  Dr. Dongjin Kim (CSIRO Space and Astronomy  Practical Applications of VLBI Beyond Astronomy file
666 2026-06-16 16:00  Dr. Sara Issaoun (Center for Astrophysics | Harvard & Smithsonian)  Building a Precision Laboratory for Black Hole Studies file
665 2026-06-10 16:00  Prof. Philip Kim (Harvard University)  Distinguished Lecture_Search for Anyons in Quantum Materials file
664 2026-06-09 10:30  Yu Hyun Lee (University of Colorado)  Study of many-body interactions in a 3D optical lattice clock file
663 2026-05-12 15:00  Prof. Ro, Sunghan (Dept. of Physics, Harvard Univ.)  Multipole-conserving diffusion file
662 2026-04-24 15:00  Mr. Sanmun Kim(Caltech)  Gapping of the soft mode with disorder in a quantum ferromagnet file
661 2026-04-21 16:30  Dr. Jaewon Kim(UIUC)  Theory of Linear Magnetoresistance in Strange Metals file
660 2026-04-16 10:00  Mr. Luke Minho Lee (graduate student, MIT)  When Is Chiral Superconductivity favoured in Flat-Band Systems? file
659 2026-04-15 12:00  Dr. Taufiq Murtadho (Nanyang Technological University)  Common Phase Fluctuations in Low-Dimensional Bose Gases file
658 2026-04-03 15:00  Dr. Siheon Ryee(Univ. of Hamburg)  Superconductivity and Correlations in Emerging Quantum Materials file
657 2026-04-01 16:00  Dr. Dongjoon Song (University of British Columbia)  Unlocking the new frontier of novel quantum materials research using state of the art floating zone technique file
656 2026-03-31 14:00  Prof. Daniel Sando (University of Canterbury)  Crafting novel low-symmetry and topological structures in ferroelectric oxide thin films and superlattices file