visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나

KAIST Physics Distinguished Lecture

2015.07.14 10:44

admin 조회 수:15360

날짜 2015-07-16 16:00 
연사  
장소 E6-2, 1501 

[Lecture1] Multiferroic vortices: why & how do they form?

 

2015/7/16 (THU) 4PM, Lecture Hall, College of Natural Sciences (1501, E6-2) /자연과학대학 공동강의실

Sang-Wook Cheong

Director, Rutgers Center for Emergent Materials, Rutgers University

 

 

Hexagonal REMnO3 (RE= rare earths) with RE=Ho-Lu, Y, and Sc, is an improper ferroelectric where the size mismatch between RE and Mn induces a trimerization-type structural phase transition, and this structural transition leads to three structural domains, each of which can support two directions of ferroelectric polarization. Six different types of domains in h-REMnO3 meet in cloverleaf arrangements that cycle through all possible configurations, Occurring in pairs, the cloverleafs can be viewed as vortices and antivortices, in which the cycle of domain configurations is reversed. Vortices and antivortices are topological defects: even in a strong electric field they won’t annihilate. These ferroelectric vortices/antivortices are found to be associated with intriguing collective magnetism at domain walls, reflecting the multiferroic nature of vortices.

 

The formation of these multiferroic vortices turns out to be analogous to the formation of cosmic strings right after big bag and also the unbinding of vortex loops in superfluid transition. We will discuss the exact nature of this proliferation process of multiferroic vortices.

 

 

[Lecture2] Hybrid Improper Ferroelectrics: Z4xZ2 domains with Z3 vortices

 

2015/7/17 (FRI) 11AM, Lecture Hall, College of Natural Sciences (1501, E6-2) / 자연과학대학 공동강의실

Sang-Wook Cheong

Director, Rutgers Center for Emergent Materials, Rutgers University

 

 

Utilizing trilinear coupling of two types of octahedron rotations, hybrid improper ferroelectricity has been theoretically predicted in double layered compounds such as (Ca,Sr,Ba)3(Mn,Ti,Sn,Zr,Ge)2O7. On the other hand, there exists little theoretical prediction on practical properties of the potentially-ferroelectric compounds such as ferroelectric transition temperature, switchability of polarization, and chemical phase stability. We have attempted to fabricate single crystals of some of these compounds, and examined the physical properties of the crystals with the aim of discovering new bulk ferroelectrics with switchable polarization at room temperature. We will discuss the results of our comprehensive experimental investigation.

Ordering of charge/spin/orbital degrees of freedom in complex materials accompanies domains and domain walls associated with the directional variants (Zm) and also antiphases (Zn). In hybrid improper ferroelectric (Ca,Sr,Ba)3(Mn,Ti,Sn,Zr,Ge)2O7, four directional variants with different polarization directions can exist, and each polarization domain has two degenerate antiphases. It turns out that the hybrid improper ferroelectrics tend to exhibit a Z4xZ2 domain structure with Z3 vortices. This can be compared with the Z2xZ3 domain structure with Z6 vortices in hexagonal REMnO3.

 

 

Host: Department of Physics, KAIST
Contact: Prof. Chan-Ho Yang (Ext.2513)

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)
43 2025-09-09 16:00  Dr. Aravind Plathanam Babu (The Univ. of Luxembourg)  Performance of Quantum Error Correction under Realistic Noise and Crosstalk file
42 2025-09-09 16:00  Prof. Gyu-Boong Jo (Rice University)  Quantum Metamaterials with Atoms file
41 2025-09-10 11:00  Dr. Manato Fujimoto (Univ. of Tokyo)  Fractional Chern Insulators: motivation, experiments, and what makes the LLL special file
40 2025-09-10 16:00  Dr. Manato Fujimoto (Univ. of Tokyo)  Mimicking Landau levels at B = 0: quantum geometry, Kähler bands, and vortexability (with a view to higher LL physics) file
39 2025-09-10 16:30  Dr. Howard Hui (Caltech/NASA JPL)  Observing the Early Universe from the South Pole to Space file
38 2025-09-18 16:00  Prof. Su-Hyun Gong(Korea Univ.)  Engineering light–matter interactions in multilayered transition metal dichalcogenides file
37 2025-09-19 13:00  Prof. Chris. A Marianetti (Columbia University)  Towards an efficient first-principles theory of strongly correlated electron materials file
36 2025-09-25 16:00  이광진 교수 (고려대학교 반도체물리학부)  Tailoring light-matter interactions based on quantum nanophotonics file
35 2025-09-26 10:30  Dr. Jian Yang (Seoul National University)  Projective Representations and Symmetry invariants in condensed matter physics file
34 2025-09-30 16:00  Dr. Hyeok Yoon (Dept. of Mechanical Engineering, KAIST)  Probing Spin-Triplet and Topological Superconductivity in UTe2 through Device Design file
33 2025-10-16 16:00  차진웅 박사 (KRISS)  Cavity Optomechanics with Superconducting Microwave Circuits and Silicon Photonic Devices  file
32 2025-10-17 11:00  김나연 박사 (KIMS)  Multimodal Atomic Imaging of Light Elements Enabled by Electron Ptychography file
31 2025-10-23 14:00  Prof. Alfredo De Rossi (Thales Research and Technology)  40 years of nonlinear optics in photonic crystals file
30 2025-10-31 16:00  이근호 박사(삼성전자 부사장)  Physics for Future Innovation Seminar file
29 2025-11-04 16:30  Dr. Jeongheon Choe(Columbia University)  Collective Excitations in Quantum Materials: From Ferrons to Axial Phonons file
28 2025-11-06 16:00  황현 박사 (KAIST 물리학과)  Nonlinear and quantum photonics in ultra high Quality factor lithium niobate photonics crystal micro-resonators file
27 2025-11-07 16:00  Prof. Denis Seletskiy (Polytechnique Montréal & Univ. of New Mexico)  New vistas in time-domain quantum optics using ultrashort macroscopic quantum light states file
26 2025-11-11 11:00  Prof. David Snoke (Distinguished Professor at University of Pittsburgh)  What have we learned in 100 years of quantum mechanics? file
25 2025-11-13 16:00  손창희 교수 (울산과학기술원 물리학과)  Oxides as Emerging Optical Materials file
24 2025-11-14 11:00  최영우 교수 (서강대학교 물리학과)  One-dimensional van der Waals single-chains and heterojunctions file