visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2022-12-09 11:00 
일시 Dec. 9 (Fri), 11:00AM 
장소 E6-2 #1323 
연사 김도헌(서울대 물리천문학부 교수) 
세미나 영상은 아래 링크로 확인 바랍니다. (공개기간: 2022.12.15-2023.03.14, 3개월)
 
 
1. Date / Time 
    - Dec  9, 2022
    - 11:00 AM (KST)
 
2. Place: E6-2 #1323
 
3. Speaker
    - 김도헌 (서울대 물리천문학부 교수)
 
4. Talk Title
    - Two-electron quantum dot spin qubits in isotopically purified silicon
 
5. Abstract
Engineered spin-electric coupling is essential to enable fast manipulation of spins in semiconductor quantum dot (QD) nanostructures, especially in silicon. Although the placement of on-chip micromagnets has enabled single-spin qubits in silicon with gate fidelity to reach surface code-based error correction threshold, corresponding results using encoded spin qubits, for example, single-triplet qubits with high-quality quantum oscillations, have not been demonstrated. Instead, the spin-valley coupling has been recently used to enhance the electrical controllability of two-electron spin qubits in silicon at the expense of increased susceptibility to charge noise. Here, we demonstrate fast singlet-triplet qubit oscillation (~ 100MHz) of a quantum dot spin qubit in isotopically purified 28Si/SiGe substrate with an on-chip micromagnet in the regime where valley-splitting in each quantum dot exceeds 300 ueV. Combining rf-reflectometry-based single-shot readout and real time Hamiltonian estimation, we show that the oscillation quality factor of an encoded spin qubit over 1000 can be achieved. We further present the measurement of single-triplet qubit oscillation and variation of coherence time near the micro-magnet’s magnetization reversal, offering a route to in-situ tune magnetic field gradient and hence the Larmor frequency of the singlet-triplet qubit in silicon.
 
Attached: C.V
 
Inquiry: Prof. Se Kwon Kim(sekwonkim@kaist.ac.kr) / Prof. Hee Jun Yang (h.yang@kaist.ac.kr)
 
번호 날짜 장소 제목
364 2022-03-14 16:00  E6, #1501  Quantitative phase imaging and artificial intelligence: label-free 3D imaging, classification, and inference
363 2022-04-25 16:00  E6, #1501  Ultrafast electron beam, a tool to explore the nanoscopic world of materials(우리말강의)
362 2022-02-28 16:00  E6, #1501  Spin-based training of optical microscopes
361 2022-04-11 16:00  E6, #1501  Emergence of Statistical Mechanics in Quantum Systems
360 2022-05-02 16:00  E6, #1501  What can we learn from the history of science and technology?(우리말강의)
359 2022-05-23 16:00  E6, #1501  Novel electronic transport in topological van der Waals magnets
358 2022-05-09 16:00  E6, #1501  Searching for new electronic properties in correlated material flatland
357 2022-04-04- 16:00  E6, #1501  New paradigms in Quantum Field Theory
356 2022-05-16 16:00  E6, #1501  Design synthetic topological matter with atoms and lights
355 2022-05-30 16:00  E6, #1501  Light manipulation using 2D layered semiconductors
354 2015-10-23 10:30  E6, #1501  How to write a good scientific paper[Open lecture series]
353 2024-03-28 11:00  E6, #2501  Geometric characterization of thermoelectric performance of two-dimensional quadratic band-crossing semimetals
352 2016-03-07 16:00  E6, 1501  Physics Colloquium : 2016 Spring file
351 2015-09-07 16:00  E6, 1501  Physics Colloquium : 2015 Fall file
350 2015-03-09 16:00  E6, 1501  Physics Colloquium : 2015 Spring file
349 2015-09-15 16:00  E6, 1501  Physics Colloquium : 2014 Fall file
348 2014-03-10 16:00  E6, 1501  Physics Colloquium : 2014 Spring file
347 2013-09-09 16:00  E6, 1501  Physics Colloquium : 2013 Fall
346 2013-03-11 16:00  E6, 1501  Physics Colloquium : 2013 Spring
345 2012-04-02 16:00  E6, 1501  A new route to ferroelectricity in magnetic spinels: a case of Co2MnO4