Toggle menu
Toggle preferences menu
Toggle personal menu
Not logged in
Your IP address will be publicly visible if you make any edits.

Quantum Control Lab: Difference between revisions

From QCLab
No edit summary
No edit summary
 
(6 intermediate revisions by the same user not shown)
Line 2: Line 2:
{{News| Recent News|
{{News| Recent News|
* The [[Quantum Control Internship]] is open all year round. Apply through the [https://QuantumWorkforce.kr School of Quantum].
* The [[Quantum Control Internship]] is open all year round. Apply through the [https://QuantumWorkforce.kr School of Quantum].
* We are organizing the [[WLC2023|Wolfram Language Conference 2023]] (previously, Korea Mathematica User Conference).
* We organized the [[WLC2023|Wolfram Language Conference 2023]] (previously, Korea Mathematica User Conference).
* We have organized the [[Variational Quantum Algorithms: Challenge or Excuse| Quantum Camp on "Variational Quantum Algorithms: Challenge or Excuse"]].
* We organized the [[Variational Quantum Algorithms: Challenge or Excuse| Quantum Camp on "Variational Quantum Algorithms: Challenge or Excuse"]].
* We are a member of the [https://QuantumWorkforce.kr Center for Quantum Sapient Workforce] funded by the Ministry of Science and ICT of Korea.
* We are a member of the [https://QuantumWorkforce.kr Center for Quantum Sapient Workforce] funded by the Ministry of Science and ICT of Korea.
}}
}}
Line 16: Line 16:
* Quantum Charge and Spin Transport, etc.
* Quantum Charge and Spin Transport, etc.


양자상태를 결맞게 조작할 수 있는 물리적 원리 및 방법론을 찾아 양자컴퓨팅 및 양자시뮬레이션, 양자AI 등에 적용하며, 초전도 양자컴퓨터 혹은 스핀 양자컴퓨터 개발에 필요한 물리학을 연구한다.
양자상태를 결맞게 제어할 수 있는 물리적 원리 및 방법론을 찾아 양자컴퓨팅 및 양자시뮬레이션, 양자AI 등에 적용하고, 초전도 양자컴퓨터나 스핀 양자컴퓨터 등과 같은 하드웨어 개발을 위한 양자이론을 연구한다.


[[Category:Default]]
[[Category:Default]]

Latest revision as of 23:53, 17 June 2025

Recent News

We seek physical principles and methods for coherent manipulation of quantum states. More specifically, we work in

  • Quantum Computation and Quantum Simulation,
  • Quantum Machine Learning,
  • Quantum Information Theory,
  • Superconductivity and Superconducting Quantum Circuits,
  • Quantum Information Processing with Spins,
  • Quantum Charge and Spin Transport, etc.

양자상태를 결맞게 제어할 수 있는 물리적 원리 및 방법론을 찾아 양자컴퓨팅 및 양자시뮬레이션, 양자AI 등에 적용하고, 초전도 양자컴퓨터나 스핀 양자컴퓨터 등과 같은 하드웨어 개발을 위한 양자이론을 연구한다.