visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2017-08-31 14:00 
연사  
장소 #5318(E6-2. 5th fl.) 

“Berry phase and nonlinear response: photocurrent in noncentrosymmetric insulators and Weyl semimetals”

Prof. Hiroaki Ishizuka (The University of Tokyo)

AUG. 31 (Thu.), 2 PM / #5318(E6-2. 5th fl.)

 

Berry phase is one of the important keywords to understand non-trivial quantum effects. In condensed matter physics, the Berry phase often shows up in transport phenomena (e.g., quantum and anomalous Hall effects) and is considered as a keyword to understand topological properties of non-interacting fermion systems. While most of such studies have focused on the equilibrium states or linear responses in close to the equilibrium, a recent study on the photogalvanic effects have pointed out the relation between the Berry phase and photogalvanic effects in noncentrosymmetric insulators where inter-band transitions take an essential role [1-3]; it is named shift current as it is related to the shift of the Wannier function. So far, however, no observable consequences that distinguish this phenomenon from the conventional mechanism is known. In this talk, we theoretically explored the basic properties of shift current focusing on the distinction between the conventional and shift current mechanisms. 

To theoretically study the photocurrent, we employed a Keldysh Green’s function formalism combined with Floquet theory. Using a large size numerical calculation, we study how the photocurrent changes by the local excitation, i.e., when only a part of the system is irradiated by the light. We show that, for the shift current, the magnitude of the current does not depend on the position of the light [4]. This is in contrast to the conventional mechanism, where the photocurrent is expected to be larger at the edge of the sample while it is suppressed when the light is at the center. Such behavior is consistent with the photocurrent recently observed in a noncentrosymmetric organic solid [5].

In the latter half of the talk, we discuss the effect of Berry phase on the photocurrent in Weyl semimetals [6,7]. We show that the Berry phase associated with the Weyl nodes induce a similar phenomenon to the adiabatic pump, resulting in a dissipation-less photocurrent. We find that the photocurrent appears only with the circularly polarized lights. This mechanism may potentially explain the photocurrent observed in TaAs [8].

 

[1] W. Kraut and R. von Blatz, Phys. Rev. B 19, 1548 (1979); ibid. 23, 5590 (1981). 

[2] J. E. Sipe and A. I. Shkrebtii, Phys. Rev. B 61, 5337 (2000).

[3] T. Morimoto and N. Nagaosa, Science Adv. 2, e1501524 (2016).

[4] H. Ishizuka and N. Nagaosa, New J. Phys. 19, 033015 (2017).

[5] M. Nakamura, et al., Nature Commun. 8, 281 (2017).

[6] H. Ishizuka et al., Phys. Rev. Lett. 117, 216601 (2016).

[7] H. Ishizuka et al., Phys. Rev. B 95, 245211 (2017).

[8] Q. Ma et al., preprint (arXiv: 1705.00690).

 

Contact: Eun Gook Moon, Physics Dept., (egmoon@kaist.ac.kr)

20170831_Hiroaki Ishizuka.pdf

번호 날짜 연사 제목
공지 2025-09-01 12:00    2025년 가을학기 콜로키움
공지 2025-09-05 11:00    2025년 가을학기 물리학과 특별세미나 (광학/응집물리 분야)
648 2025-12-29 10:30  Dr. Chul-Hee Min (Norwegian University of Science and Technology)  Emergence of Holstein polarons in semimetallic TmSe1-xTex Probing Weyl nodes in Trigonal Weyl Semimetal PtBi2₂ by ARPES file
647 2025-12-12 12:00  Kohji Nakamura (Mie University) 외 6명  Mini-workshop on first-principles computations of magnetic materials file
646 2025-12-09 16:00  Dr. Moosung Lee (Universität Stuttgart, Germany)  Inverse photonic design for exploring quantum motion in levitated optomechanics file
645 2025-12-05 10:30  박경덕 교수 (연세대)  Quantum for AI, AI for Quantum file
644 2025-12-05 09:00  박지호 박사 (ETRI)  광기반 양자 얽힘을 활용한 양자 정보 기술 소개 file
643 2025-12-03 11:00  Kyoung Hun Oh (MIT) *박사과정  Ultrafast light-driven dynamics of moiré charge density waves in EuTe4 file
642 2025-11-21 15:00  김병윤 교수 (KAIST 전 창업원장)  Physics for Future Innovation Seminar Series file
641 2025-11-21 10:00    Korea-Luxembourg Workshop: Quantum computing and related quantum technologies file
640 2025-11-14 11:00  최영우 교수 (서강대학교 물리학과)  One-dimensional van der Waals single-chains and heterojunctions file
639 2025-11-13 16:00  손창희 교수 (울산과학기술원 물리학과)  Oxides as Emerging Optical Materials file
638 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
637 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
636 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
635 2025-11-04 16:30  Dr. Jeongheon Choe(Columbia University)  Collective Excitations in Quantum Materials: From Ferrons to Axial Phonons file
634 2025-10-31 16:00  이근호 박사(삼성전자 부사장)  Physics for Future Innovation Seminar file
633 2025-10-23 14:00  Prof. Alfredo De Rossi (Thales Research and Technology)  40 years of nonlinear optics in photonic crystals file
632 2025-10-17 11:00  김나연 박사 (KIMS)  Multimodal Atomic Imaging of Light Elements Enabled by Electron Ptychography file
631 2025-10-16 16:00  차진웅 박사 (KRISS)  Cavity Optomechanics with Superconducting Microwave Circuits and Silicon Photonic Devices  file
630 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
629 2025-09-26 10:30  Dr. Jian Yang (Seoul National University)  Projective Representations and Symmetry invariants in condensed matter physics file