visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2018-04-11 16:00 
연사  
장소 #1323 (E6-2, 1st fl.) 

Physics Seminar

 

Non-Gaussian states of multimode light generated via hybrid quantum information processing

 

Dr. Young-Sik Ra

Laboratoire Kastler Brossel, Paris, France

 

April 11 (Wed), 4:00pm

#1323 (E6-2, 1st fl.)

 

 

Abstract:

Optical quantum information processing can be classified into two categories depending on the way of encoding quantum information on light: one harnesses the particle nature (photon)−called discrete-variable approach−, and the other exploits the wave nature (electric field)−called continuous-variable approach. Basic nonclassical lights for the two are single photon and squeezed vacuum, respectively. Recently, a new field of study is emerging, called hybrid quantum information processing that combines the two conventional approaches to complement each other.

 

In this seminar, I will present generation of non-Gaussian quantum states of multimode light based on the hybrid quantum information processing. Squeezed vacuum, which is employed in the continuous-variable approach, is a Gaussian state, which can be described by moments up to the second order (i.e. variance). However, it has limitations on quantum computing and quantum communication, while single-photon subtraction used in the discrete-variable approach can provide non-Gaussian characteristics. We have implemented a single-photon subtractor compatible with multimode squeezed vacuum and generated non-Gaussian multimode quantum states. The novel quantum states of light will find applications in various quantum technologies such as distillation of entangled states, universal quantum computing, and quantum metrology.

 

Contact: Yongseop Kang, Administration Team (T.2599)

 

Department of Physics

번호 날짜 연사 제목
공지 2025-02-24 16:00    2025년 봄학기 콜로키움 안내
공지 2025-02-27 16:00    2025년 봄 물리학과 특별세미나 (광학/응집물리 분야)
259 2019-06-28 13:30    Magnetic domains and domain wall conduction in pyrochlore iridate thin films and heterostructures file
258 2016-04-08 13:30    Theoretical Overview of Iron-based superconductors and its future
257 2017-09-26 11:00    Time-resolved ARPES study of Dirac and topological materials
256 2019-11-01 14:30    Squeezing the best out of 2D materials file
255 2019-04-19 14:30    A family of finite-temperature electronic phase transitions in graphene multilayers file
254 2015-11-06 16:30    Topological Dirac line nodes in centrosymmetric semimetals
253 2018-03-16 16:00    Van der Waals Heterostructures from Quantum Transport to Ultrafast Optoelectronics file
252 2018-03-16 16:00    Van der Waals Heterostructures from Quantum Transport to Ultrafast Optoelectronics file
251 2022-08-09 14:00    Quantum biology in fluorescent protein: a new model system to study quantum effects in biology file
250 2016-05-13 13:30    Aperiodic crystals in low dimensions
» 2018-04-11 16:00    Non-Gaussian states of multimode light generated via hybrid quantum information processing file
248 2017-05-12 13:30    Topological Dirac insulator
247 2022-05-13 16:00    High-fidelity iToffoli gate for fixed-frequency superconducting qubits file
246 2022-06-10 11:00    Record-quality two-dimensional electron systems file
245 2018-04-11 13:30    Probing 3D Structure and Physical Properties of Materials at the Single-Atom Level file
244 2018-10-15 16:00    Universal properties of macroscopic current-carrying systems file
243 2016-09-02 16:00    Quantum Electrical Transport in Topological Insulator Nanowires
242 2016-09-02 14:30    Nanoscale Thermal Physics: Seebeck Effect and Nanoscale Friction
241 2023-12-14 16:00    Superconducting qubits for large-scale quantum computers file
240 2023-04-13 11:00    [High Energy Theory Seminar]Noninvertible Gauss Law and Axions