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seminar Date  
Date & Time Jun. 14 (Tue) 4PM 
Venue Seminar Room (#2502, 2nd fl.) 
Speaker Young-Sik Ra, Université Pierre et Marie Curie 

Photonic quantum network based on multimode squeezed vacuums and single-photon subtraction

 

Jun. 14 (Tue) 4PM, Seminar Room (#2502, 2nd fl.)
Young-Sik Ra, Université Pierre et Marie Curie

 

Over the last decades, application of photonic technologies to quantum information science has been very successful, which establishes light as a promising quantum system to carry and process quantum information. Quantum information is encoded on the quantum states of light such as single photons and squeezed lights; the encoded information can be controlled with high precision, maintained with low decoherence, transmitted at the fastest speed, and decoded by efficient detectors. Conventional ways for generating the quantum states of lights are, however, unsuited for constructing a large-scale quantum system due to the highly increasing resource overheads. In this seminar, I will present development of a photonic quantum network – a correlated large-scale quantum system – based on multimode squeezed vacuums and single-photon subtraction. We employ the intrinsic multimode structure of an ultrafast frequency comb to construct the quantum network, and implement a mode-selective single-photon subtractor based on frequency up-converted single-photon detection. I will further discuss our recent progress on experimental implementation of the photonic quantum network.

 

Contact: Yoonsoo Kim (T.2599)

번호 seminar Date Venue 제목
공지     Spring 2019: Physics Seminar Serises
공지     Spring 2019: Physics Colloquium
공지   Seminar Room #1323  Fall 2017: Physics Seminar Serises
공지   Seminar Room 1501  Fall 2017: Physics Colloquium
»   Seminar Room (#2502, 2nd fl.)  Photonic quantum network based on multimode squeezed vacuums and single-photon subtraction
140   Seminar Room 1501  Spring 2017: Physics Colloquium file
139   Seminar Room 1323  Spring 2017: Physics Seminar Serises file
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137   #1323(E6-2. 1st fl.)  Quantum electron optics using flying electrons
136   Lecture Hall, College of Natural Sciences [#1501,E6-2]  Topological Defects and Phase Transitions
135   1:30p.m. #1323(E6-2. 1st fl.)  “Possible symmetry in the phase diagrams of electron- & hole-doped cuprate high-Tc superconductors”
134   #1323(E6-2. 1st fl.)  Entanglement area law in strongly-correlated systems
133   #1323(E6-2. 1st fl.  Shift Charge and Spin Photocurrents in Dirac Surface States of Topological Insulator
132   #1323(E6-2. 1st fl.)  Dynamical Resonance between Two Optical Cavities via Optomechanical Oscillator
131   #1323(E6-2. 1st fl.)  Symmetry Protected Kondo Metals and Their Phase Transitions
130   #1323(E6-2. 1st fl.)  Harmonic oscillator physics with single atoms in a state-selective optical potential
129   #5318(5th fl.)  Non-equilibrium many-body spin dynamics in diamond
128   #1323(E6-2. 1st fl.)  Realizing Haldane Model in Fe-based Honeycomb Ferromagnetic Insulators
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