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Quantum Control Lab: Difference between revisions

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{{News| Recent News|
{{News| Recent News|
* The [https://github.com/quantum-mob/Q3App Mathematica application Q3] has been released to the public.
* We are organizing the [[WLC2023|Wolfram Language Conference 2023]] (previously, Korea Mathematica User Conference).
* The [[Quantum Control Internship|Winter Internship]] is now open. The application will be open on Nov 27--Dec 8, 2020 at the Department Office.
* We have organized the [[Variational Quantum Algorithms: Challenge or Excuse| Quantum Camp on "Variational Quantum Algorithms: Challenge or Excuse"]].
* <!--The [[Quantum Control Internship|Summer Internship]] is now open. The application will be open on June 4--19, 2020 at the Department Office.-->
* The [[Quantum Control Internship]] is open all year round. Apply through the [https://QuantumWorkforce.kr Quantum Workforce Center].
* We are now a member of the [[qubits:Solid-State Qubits Lab|Solid-State Qubits Lab]], a government supported Basic Research Lab (BRL).
* We are a member of the [https://QuantumWorkforce.kr Center for Quantum Sapient Workforce] funded by the Ministry of Science and ICT of Korea.
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We seek physical principles and methods for coherent manipulation of quantum states of mesoscopic systems, and study<br/>
<p>We seek physical principles and methods for coherent manipulation of quantum states of mesoscopic systems, and study the effects of such manipulation on various phenomena including quantum transport and quantum information processing.</p>
the effects of such manipulation on various phenomena including quantum transport and quantum information processing.<br />


More specific fields are:
More specific fields are:
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양자상태를 결맞게 조작할 수 있는 물리적 원리 및 방법론을 찾고, 특별한 양자상태에따라 달라지는 수송현상, 양자정보처리 등을 연구한다.
양자상태를 결맞게 조작할 수 있는 물리적 원리 및 방법론을 찾고, 특별한 양자상태에따라 달라지는 수송현상, 양자정보처리 등을 연구한다.


{{Block|
[[Category:Default]]
Everything has beauty, but not everyone sees it. <br />
-- Confusius --}}

Latest revision as of 06:48, 12 February 2025

Recent News

We seek physical principles and methods for coherent manipulation of quantum states of mesoscopic systems, and study the effects of such manipulation on various phenomena including quantum transport and quantum information processing.

More specific fields are:

  • Quantum Computation and Quantum Information.
  • Superconductivity and Superconducting Quantum Circuits.
  • Spin Transport and Quantum Information Processing with Spins.
  • Quantum Transport in Mesoscopic Systems.

양자상태를 결맞게 조작할 수 있는 물리적 원리 및 방법론을 찾고, 특별한 양자상태에따라 달라지는 수송현상, 양자정보처리 등을 연구한다.