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UID:MEC-cd0cbcc668fe4bc58e0af3cc7e0a653d@physics.uos.ac.kr
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SUMMARY:Colloquium for the 1st semester of 2023 (2) : Quantum nano-optics
DESCRIPTION:\n\n\n\n\n07.Apr. 2023 (17:00) |Science and technology building(#112), University of Seoul, Korea\n\n\n\nPage 1 of 4«1234»Colloquium for the 1st semester of 2023 (10) : The quantum information/communication experiment Colloquium for the 1st semester of 2023 (9) : Quantum sensor Colloquium for the 1st semester of 2023 (8) : The Secret to the Popularity of American Physics Undergraduate Studies in Physics Colloquium for the 1st semester of 2023 (7) : Quantum optical semiconductors/Quantum light sources Colloquium for the 1st semester of 2023 (6) : Reedberg Atomic Quantum Computer Colloquium for the 1st semester of 2023 (5) : Phonon vibration modes in organic-inorganic hybrid perovskite materials Colloquium for the 1st semester of 2023 (4) : Synthesis and Twistronics Study on Single Crystal GE of hBN and Graphene Colloquium for the 1st semester of 2023 (3) : Diamond Qubit Colloquium for the 1st semester of 2023 (2) : Quantum nano-optics Colloquium for the 1st semester of 2023 (1) : Superconducting quantum computer id=”373″]id=”374″]\n\n\n\n\n\n\n\nTitle : Quantum nano-optics\n\n\n\n주제 : 양자 나노과학\n\n\n\nSpeaker : Prof. Gong Soo-hyun (Korea university)\n\n\n\n강연자(소속) : 공수현 교수 (고려대학교)\n\n\n\nDate : 07.Apr. 2023 (17:00)\n\n\n\n일 시 : 2023년 4월 7일 (17:00)\n\n\n\nLocation : Science and technology building(#112), University of Seoul, Korea\n\n\n\n장소: 과학기술관 112호, 서울시립대학교, 한국\n\n\n\nOrganizaion : Department of Physics College of Natural Sciences, Institute of Natural Science \n\n\n\n주최/주관 : 자연과학대학 물리학과, 자연과학연구소\n\n\n\n\n\n\n\nAbstract 1\n\nValley-photon coupling in 2D semiconductors\n\n\n\nSu-Hyun Gong\n\n\n\nDepartment of Physics, Korea University, Seoul, Republic of Korea\n\n\n\nThe emergence of transition metal dichalcogenides (TMD) layers has sparked significant research interest because of their outstanding optical property and optically assessable new internal degrees of freedom called valley pseudospins. Despite its strong exciton resonance strength, the interaction between light and a TMD layer is intrinsically weak due to the huge mismatch between wavelength and the layer thickness (400–1500 nm vs. <1 nm). It is generally believed that additional photonic structures such as external cavities are necessary to increase light-matter coupling in a TMD layer. However, these additional structures easily spoil valley pseudospin information making it difficult to exploit the full potential of TMD layers. Recently, the possibility of light guiding in 2D TMD layers without a cavity, like the surface plasmon polariton in 2D graphene, has been demonstrated. Because the light-guiding is attributed to the high permittivity of 2D TMD layers near the exciton resonance, this mode is called exciton polaritons. In this talk, experimental observation of the guided exciton polariton in multilayered WS2 will be discussed. By utilizing the near-field coupling method, we directly observed the anti-crossing behavior of exciton and photon dispersion curves, indicating exciton polariton dispersion. The dispersion of the guided polaritons can be easily tuned by controlling the thickness of the layer or the excitation power of the laser. More importantly, we found that the guided polariton mode can exhibit valley polarization under circularly polarized excitation. These results pave the way for exploiting a valley pseudospin in integrated valleytronics devices using nanophotonics structures.\n\n\n\n\n\n\n\n\n\nPlease refer to the schedule below for all the Colloquiums for the first semester of 2023\n\n\n\n기타 2023년 1학기 콜로퀴움은 아래 일정 참고하세요.\n\n\n\n\n\n\n\n\n\nContact no. : +82 2-6490-2640\n\n\n\n\n\n\n\nid=”368″]\n\n\n\n\nView Calendar\n\n      
URL:https://physics.uos.ac.kr/colloquium/coloquium-for-the-1st-semester-of-2023-2-quantum-nano-optics/
ORGANIZER;CN=College of Natural Sciences:MAILTO:
CATEGORIES:Colloquium
LOCATION:University of Seoul
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