visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2024-12-06 16:00 
연사 Vladimir Y. Chernyak (Wayne State University) 
장소 E6-2 #1323 

 

세미나/특강명 

Bright Squeezed Light (BSL) Spectroscopy 

with Interferometry from First Principles

연사명

Vladimir Y. Chernyak

소속기관 

및 직위

Professor,

Department of Chemistry, Wayne State University

개최 일시

Dec 6, 2024 (Fri), 4:00 PM

개최 장소

E6-2 #1323

 
Abstract: 
 We present a theoretical approach that allows understanding the quantum light spectroscopy and interpretation of experimental data from first principles and discuss the main theoretical physics concepts and tools that stand behind it. The latter include (i) Hamiltonian vs Lagrangian picture in classical and quantum mechanics, (ii) Second quantization, (iii) Feynman path integral, (iv) Reduced description and effective action, and (v) Gauge invariance and generalized effective action. The theoretical approach is based on (i) quantum dynamics in Liouville space of mixed states, (ii) Computing the optical signals directly using the many-body Green function techniques, and (iii) Describing the classical light sources/lasers via classical external polarization, rather than a classical driving field produced by the lasers.
 
 Quantum light nonlinear spectroscopic techniques are attributed to the Liouville space Feynman diagrams that label perturbative contributions to the signals, associated with different dynamical processes in a system under spectroscopic study. Due to optical nonlinearity in an auxiliary system, e.g., in a parametric down conversion (PDC) crystal light, produced by a laser shows quantum properties, despite containing a macroscopic number of photons. Quantum features of light, appearing in such spectroscopies, are attributed to loops in Feynman diagrams that describe the corresponding signals. Applications are made to nonlinear response of photosynthetic excitons and difference-frequency-generation spectroscopy.
 
Contact.  안드레이모스칼렌코 교수 (moskalenko@kaist.ac.kr)
 
번호 날짜 연사 제목
공지 2025-09-01 12:00    2025년 가을학기 콜로키움
공지 2025-09-05 11:00    2025년 가을학기 물리학과 특별세미나 (광학/응집물리 분야)
182 2019-07-16 16:00    2019 Physics Distinguished Lecture file
181 2019-07-10 16:00    Public Lectures file
180 2018-10-04 16:00    Engineering light absorption in an ultrathin semiconductor metafilm file
179 2019-12-05 16:00    Subwavelenth Photonic Devices: From Single Photon Sources to Solar Cell file
178 2023-06-16 13:00    Quantum critical states under extreme conditions
177 2019-05-24 16:00    Infrared spectroscopy study on metal-insulator transitions in layered perovskite iridates file
176 2023-11-22 10:00    [High Energy Theory Seminar] Exact Quantum Algorithms to Recognize Quantum Phases of Matter
175 2019-04-04 16:00    Chiral spin-photon interaction at nanoscale file
174 2025-09-18 16:00  Prof. Su-Hyun Gong(Korea Univ.)  Engineering light–matter interactions in multilayered transition metal dichalcogenides file
173 2021-02-17 09:00    석학 대중 강연 및 강의 시리즈 file
172 2018-11-22 15:00    Experimental and Computational Study on Physical Properties based on Granular System file
171 2025-02-17 16:00  Prof. Takehito Yokoyama (Institute of Science Tokyo)  Unconventional spin-spin interaction mediated by Cooper pairs or phonons file
170 2023-02-20 16:00    Physics of ferromagnet/superconductor junctions
169 2023-05-17 16:30    Detecting Hidden Photon Dark Matter via the Excitation of Qubits file
168 2018-05-31 16:00    Dynamic control of optical properties with gated-graphene metamaterials file
167 2023-11-08 10:00    [High Energy Theory seminar] The Vacuum Sector of Asymptotically Isometric Codes
166 2020-10-09 09:00    Quantum Many-Body Simulation file
165 2024-11-21 16:00  Prof. Ulrich Höfer (University of Marburg, Germany)  Time-resolved photoemission: From bandstructure to orbital movies file
164 2017-04-05 12:00    2017년 4월 첫수 융합포럼 개최 안내(물리학과 & 원자력 및 양자공학과 공동 개최)/The First Wednesday Multidisciplinary Forum in April 2017 organized by Dept. of Physics & Dept. of Nuclear & Quantum Engineering file
163 2020-09-22 09:30    Physics and applications of soliton microcombs(Quantum- & Nano-Photonics) file