visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2018-04-13 10:00 
연사  
장소 #1323 (E6-2, 1st fl.) 

Physics Seminar

 

Quantum meets Mechanics: from Quantum Information to Fundamental Research

 

Dr. Sungkun Hong

Vienna Center for Quantum Science and Technology, University of Vienna

 

April 13 (Fri.), 10am

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

 

 

Abstract:

Studying quantum aspects of macroscopic moving bodies is a new emerging field in quantum physics. The main experimental approach is cavity optomechanics, where photons in the cavity are used to measure and manipulate motional states of mechanical oscillators. Cavity optomechanics, together with advancements in microfabrication of mechanical devices, has allowed us to observe and control mechanical resonators at the quantum level. This opens new exciting possibilities for quantum information science and for studying quantum physics in hitherto untested macroscopic scales.

In this talk, I will describe two different quantum optomechanics experiments that I have been doing in Vienna. First, I will present our progress in utilizing on-chip optomechanical devices as a new resource for quantum information. Using micro-fabricated silicon structures, we demonstrated the generation of quantum-correlated photon-phonon pairs, the generation and retrieval of single phonons, and the remote entanglement between two mechanical modes, paving the way for telecom-compatible optical quantum networks. Future directions of the work will also be discussed. Next, I will introduce a novel, hybrid optomechanical system consisting of optically levitated nanoparticles and micro-fabricated photonic crystal cavity. The system combines ultra-high mechanical quality of the levitated nanoparticle and strong optical transduction from the optical cavity. It thus will allow for quantum coherent experiments on particle’s motions even at room temperature. I will discuss the current status of the experiment as well as future plans of the work, particularly the matter-wave interferometry in an unexplored mass regime.

 

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

 

Department of Physics

번호 날짜 연사 제목
공지 2026-03-09 16:00    2026년 봄학기 콜로키움
공지 2026-03-05 16:00    2026년 봄학기 물리학과 특별세미나 (광학/응집물리 분야)
167 2022-05-13 14:30    Topological Superconducting Spintronics Towards Zero-Power Computing Technologies file
166 2016-12-09 16:00    Shift Charge and Spin Photocurrents in Dirac Surface States of Topological Insulator
165 2018-05-11 14:30    Disordered Floquet topological insulators file
164 2023-09-14 16:00    [CAPP seminar] Dark matter searches in Water Cherenkov Detectors file
163 2023-07-18 11:00    Non-Hermitian Casimir Effect of Magnons
162 2024-06-13 16:00  Dr. Kouki Nakata (Advanced Science Research Center, Japan Atomic Energy Agency)  Magnonic $\varphi$ Josephson junction and its non-Hermitian Josephson diode effect
161 2016-05-31 16:00    Understanding 3D tokamak physics towards advanced control of toroidal plasma
160 2016-04-01 14:30    Interference of single charged particles without a loop and dynamic nonlocality
159 2016-11-11 13:30    Bandgap Engineering of Black Phosphorus
158 2021-06-11 16:00    Pseudogap in surface-doped black phosphorus file
157 2024-03-07 16:00  Dr. Kenichrio NAGAYOSHI (NWO-I/SRON)  [CAPP seminars] Development of Superconducting Transition Edge Sensors at SRON file
156 2018-11-29 16:00    양자 칸델라 실현을 위한 단일 광자 발생장치 개발 file
155 2022-04-01 16:00    High-field Electron Transport and Interaction Induced Phenomena in 2D Materials file
154 2015-11-24 16:00    Topology-based understanding of spin dynamics in inhomogeneously magnetized systems
153 2016-07-08 14:00    Electronic quasiparticles in the quantum dimer model
152 2016-10-18 15:00    “Hybrid quantum systems with mechanical oscillators”
151 2026-02-02 14:00  Dr. Junho Seo (Max Planck Institute)  Emergent transport phenomena in quantum materials driven by topology file
150 2022-12-20 16:00    Studying Baryonic Flow Across the Cosmic Scales Using Radio and Millimeter Wavelength Experiments
149 2015-12-17 11:00    Wavefront engineering for in-vivo Deep brain imaging
148 2018-07-27 13:30    Magnetic reversal of artificial spin ice file