visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나

Quantum electron optics using flying electrons

2017.01.26 23:43

Physics 조회 수:19580

날짜 2017-02-01 14:00 
연사  
장소 #1323(E6-2. 1st fl.) 

Quantum electron optics using flying electrons

 

Dr. Michihisa Yamamoto, Department of Applied Physics, The University of Tokyo

Feb. 1 (Wed.), 2p.m.  #1323(E6-2. 1st fl.)

 

Abstract: Quantum electron optics is a field in which one manipulates quantum states of propagating electrons. Combined with technologies for confining and manipulating single electrons, it allows us to investigate the scattering and interference of electrons in a unit of a single electron. The necessary elements of quantum electron optics experiments include single electron beam splitter, phase shifter, Coulomb coupler, single electron source and detector, spin-orbit path and electron-pair splitter.

In this talk, we present development of some of these elements. The beam splitter and phase shifter are implemented in our original two-path interferometer [1-3]. This interferometer has been shown to be the only reliable system for the measurement of the transmission phase shift of electrons [4,5]. To suppress decoherence induced by the electron-electron interaction and enhance the interference visibility, we recently developed a two-path interferometer of depleted channels, where single electrons are injected by means of surface acoustic waves (SAWs). We also confirmed that a single electron in a static quantum dot (single electron source) can be adiabatically transferred into a SAW-driven moving quantum dot [6], a necessary ingredient for achieving the high interference visibility of a single flying electron.

Quantum electron optics also targets the manipulation of spins of flying single electrons. We found that the spin information of one or two electrons can be transferred between distant quantum dots, which work as the single electron source and detector, with the fidelity limited only by the spin flips prior to the spin transfer [7,8]. We also realized an electron-pair splitter that can be used to split spin-entangled electrons in a moving dot into different moving dots. Combined with single spin manipulation using the spin-orbit interaction (spin-orbit path) [9], this splitter should allow for Bell measurement of electron spins.

This work is in collaboration with S. Takada (now at Institut Neel), R. Ito and K. Watanabe at the University of Tokyo, B. Bertrand, S. Hermelin, T. Meunier, and C. Bäuerle at Institut Neel, and A. Ludwig and A. D. Wieck at Ruhr-Universität Bochum.

 

[1] M. Yamamoto et al., Nature Nano. 7, 247 (2012)..

[2] A. Aharony et al., New J. Phys. 16, 083015 (2014).

[3] T. Bautze et al., Phys. Rev. B 89, 125432 (2014).

[4] S. Takada et al., Phys. Rev. Lett. 113, 126601 (2014).

[5] S. Takada et al., Appl. Phys. Lett. 107, 063101 (2015).

[6] B. Bertrand et al., Nanotechnology 27, 204001 (2016).

[7] S. Hermelin et al., Nature 477, 435 (2011).

[8] B. Bertrand et al., Nature Nano. 11, 672 (2016).

[9] H. Sanada et al., Nature Phys. 9, 280 (2013).

 

Contact: SunYoung Choi, (sunyoungchoi@kaist.ac.kr)

 

 

Center for Quantum Coherence in Condensed Matter, KAIST

번호 날짜 연사 제목
공지 2026-09-10 16:00  민범기 교수 외  2026년 가을 학기 물리학과 특별세미나 (응집/광학물리 분야)
공지 2026-08-31 16:00  황정아 국회의원 외 13명  2026년 가을학기 콜로키움
563 2025-03-27 16:00  김건우 교수 (중앙대)  Quantum dynamics in synthetic spaces file
562 2023-03-24 11:00    (응집물리 세미나)Floquet simulators of topological surface states in isolation
561 2023-05-18 16:00    (광학분야 세미나)Dielectric metasurfaces for optimized optical system and spatial light modulators
560 2022-05-10 16:00    (광학분야 특별세미나)Testing quantum thermodynamics using quantum optics
559 2022-05-30 16:00    Light manipulation using 2D layered semiconductors
558 2025-03-13 16:00  고희동 교수(서울대)  분산관계 기반 파동 제어 구조물 설계 file
557 2022-09-29 16:00    (광학분야 세미나) Ultrafast THz Field-Induced Nonlinear Optics
556 2013-03-11 16:00    Physics Colloquium : 2013 Spring
555 2025-03-17 16:00  강동민 교수 (서울대)  String Theory, Quantum Field Theory and Physical Mathematics file
554 2023-05-31 16:00    [High-Energy Theory Seminar] Resurgence and complex Chern-Simons theory
553 2026-06-09 10:30  Yu Hyun Lee (University of Colorado)  Study of many-body interactions in a 3D optical lattice clock file
552 2022-01-18 14:00    Data-driven interrogation of biological dynamics: from subcellular interactions to neuronal networks in vivo file
551 2024-10-02 12:00  YoungJu Jo (Stanford University)  Data-driven discovery of neural computations through brain-wide and cell-type-specific dynamical systems file
550 2016-06-14 16:00    Photonic quantum network based on multimode squeezed vacuums and single-photon subtraction
549 2023-05-17 14:00    Optical Response in the multilayer thin films
548 2021-02-15 17:00    Magnetic Cluster Octupole Domain evolutation in chiral antiferromagnets file
547 2012-04-02 16:00    A new route to ferroelectricity in magnetic spinels: a case of Co2MnO4
546 2024-11-18 10:30  Yoichi Shiota (Kyoto University)  Manipulation of antiferromagnetic magnon polarization in synthetic antiferromagnets
545 2020-12-10 13:55    Consistency of Boltzmann equation and light dark matter from inflaton decay
544 2016-09-05 16:00    Physics Colloquium : 2016 Fall file