visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2017-11-03 16:00 
연사  
장소 #1323 (1st fl., E6-2.) 

The seminal work of Anderson triggered a great deal of theoretical and experimental efforts to search for the novel quantum spin liquid (QSL) states in matters, and it has become one of central issues in contemporary condensed matter physics. The QSL state, a long-range quantum entangled state, is represented by a topological order and fractionalization of constituent magnetic moments. While the most QSL states have been described by deconfined spinons as an elementary excitation in frustrated magnets, Kitaev’s QSL state is exactly derived by fractionalizing the spin excitation into Majorana fermions in a two-dimensional honeycomb lattice, the so-called Kitaev lattice, with the ansatz of bond dependent Ising-like spin interaction. In the past decade, experimental realization of the fascinating Kitaev honeycomb QSL model has been eagerly pursued. In this talk, I will present the experimental evidences of fractionalized Majorana fermions in a high quality α-RuCl3 single crystal. Neutron and x-ray diffraction measurements reveal that the low-temperature crystal structure forms the perfect Ru-honeycomb lattice, which provides an ideal platform for the Kitaev honeycomb quantum spin lattice. Extensive thermodynamic and neutron spectroscopic measurements directly proved fractionalized Majorana fermion excitations as a result of thermal fractionalization of Jeff = ½ pseudospins, which is well reproduces by numerical predictions obtained from the Kitaev model.

 

20171103_지성대.pdf

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)
286 2022-05-18 16:00    Geometry, Algebra, and Quantum Field Theory
285 2022-09-15 13:00    AdS black holes: a review
284 2016-11-18 10:30    Non-equilibrium many-body spin dynamics in diamond
283 2016-10-27 16:00    Terahertz Metal Optics
282 2019-06-28 13:30    Magnetic domains and domain wall conduction in pyrochlore iridate thin films and heterostructures file
281 2016-04-08 13:30    Theoretical Overview of Iron-based superconductors and its future
280 2017-09-26 11:00    Time-resolved ARPES study of Dirac and topological materials
279 2019-11-01 14:30    Squeezing the best out of 2D materials file
278 2019-04-19 14:30    A family of finite-temperature electronic phase transitions in graphene multilayers file
277 2015-11-06 16:30    Topological Dirac line nodes in centrosymmetric semimetals
276 2018-03-16 16:00    Van der Waals Heterostructures from Quantum Transport to Ultrafast Optoelectronics file
275 2018-03-16 16:00    Van der Waals Heterostructures from Quantum Transport to Ultrafast Optoelectronics file
274 2022-08-09 14:00    Quantum biology in fluorescent protein: a new model system to study quantum effects in biology file
273 2016-05-13 13:30    Aperiodic crystals in low dimensions
272 2018-04-11 16:00    Non-Gaussian states of multimode light generated via hybrid quantum information processing file
271 2025-07-03 14:00  Dr. Young-Gwan Choi (Max Planck Institute )  Quantum sensing with NV centers: nanoscale magnetometry file
270 2017-05-12 13:30    Topological Dirac insulator
269 2022-05-13 16:00    High-fidelity iToffoli gate for fixed-frequency superconducting qubits file
268 2022-06-10 11:00    Record-quality two-dimensional electron systems file
267 2018-04-11 13:30    Probing 3D Structure and Physical Properties of Materials at the Single-Atom Level file