visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2016-06-16 16:00 
연사  
장소 #1323(E6-2, 1st fl.) 

“Quantum information processing using quantum dots and photonic crystal cavities”

 

Jun. 16 (Thu) 4PM, #1323(E6-2, 1st fl.)
Hyochul Kim, Samsung Advanced Institute of Technology

 

The ability to interface light with solid-state quantum bits (qubits) is essential for future development of scalable and compact quantum information systems that operate on ultra-fast timescales. Photons act as ideal carriers of quantum information and can serve as an efficient quantum link between matter qubits. Quantum dots (QDs) provide a promising implementation of a matter qubit, which can store quantum information in both excitonic states and highly stable spin states, providing an atom-like system in a semiconductor platform. By coupling these QDs to optical nano-cavities it becomes possible to achieve the strong coupling regime where a QD can modify the cavity spectral response, providing an efficient light-matter interface.
In this talk, I will explain that the qubit state of a photon can be controlled by a single solid-state qubit composed of a QD strongly coupled to a photonic crystal cavity.  The QD acts as a coherently controllable qubit system that conditionally flips the polarization of a photon reflected from the cavity on picosecond timescales, which implements a controlled NOT logic gate between the QD and the incident photon. Furthermore, the spin of a single electron or hole trapped in a charged QD can be used as a solid-state qubit with long coherence time. I will discuss our recent experimental realization of a quantum phase switch using a solid-state spin confined in a QD strongly coupled to a photonic crystal cavity, where the switch applies a spin-dependent phase shift on a photon.


Contact: Yoonsoo Kim (T.2599)

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)
353 2023-06-01 16:00    Hall viscosity and topological phenomena
352 2021-03-25 16:00    Search for dark matter axion with Rydberg atoms file
351 2016-08-04 14:30    Relational Logic (with applications to Quantum Mechanics, String Theory, Cosmology, Neutrino Oscillations, Statistical Mechanics)
350 2022-03-25 11:00    (응집물리 세미나) Hund's metallicity in ruthenate systems file
349 2024-05-28 11:00  Prof. Ara Go (Department of Physics, Chonnam National University)  동적평균장 이론 소개
348 2019-08-22 16:00    Physics and Applications in Nanoelectronics and Nonomechanics file
347 2020-12-09 10:00    Searching for the QCD axion with the ARIADNE experiment file
346 2025-04-21 16:00  Prof. Ambrose Sungseok Seo (Univ of Kentucky)  Condensed matter physics? All you gotta do is just meet me at the ... file
345 2025-10-23 14:00  Prof. Alfredo De Rossi (Thales Research and Technology)  40 years of nonlinear optics in photonic crystals file
344 2022-08-08 14:00    Classical Shadow Tomography for Analog Quantum Simulators
343 2022-09-21 10:30    [Update 세미나 영상] Distinguished Lecture 'The Magic of Moiré Quantum Matter' Prof. Pablo Jarillo-Herrero(Department of Physics, MIT) file
342 2019-08-19 10:00    Tutorials on Multimode Quantum Optics in the Continuous Variable Regime file
341 2016-10-17 11:00    IMS and examples of the studies on optoelectronic materials
340 2024-04-11 16:00  Nanse Esaki (Ph.D. student in Physics, The University of Tokyo)  Theoretical Studies of the Electric Field Induced Thermal Hall Effect in the Quantum Dimer Magnets XCuCl3 (X = Tl, K)
339 2020-11-26 16:00    2020 가을학기 광학분야 특별세미나(Light Engineering Beyond the Diffraction Limit)
338 2024-01-24 15:00    Determination of single molecule loading rate during mechanotransduction file
337 2020-12-11 14:30    Antisymmetric interlayer exchange coupling in magnetic multilayers
336 2025-05-13 16:00  Mr. Heonjoon Park(Univ. Washington, USA)  Fractional Quantum Anomalous Hall Effect file
335 2023-01-09 16:00    Non-Hermitian Hopf-bundle Matter. Moon Jip Park (IBS-PCS)
334 2023-08-23 16:00    [High Energy Theory Seminar] A spacetime tensor network for AdS3/CFT2