visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나
날짜 2024-08-16 11:00 
연사  
장소 E6 1322 (no zoom broadcasting) 
Abstract: Cathodoluminescence (CL) is a powerful imaging technique to visualize emitters with a high spatial resolution far beyond the diffraction limit. Electron beams are truly “white” excitation sources that can excite coherent and incoherent light emission in any frequency range, covering a variety of nanophotonic materials such as photonic crystals and plasmonic resonators, and optoelectronics materials including wide-gap semiconductors. In this talk, I will introduce three cutting-edge analysis examples that take advantage of the strengths of CL.
The first topic is topological plasmonic waveguides. Valley polarization has recently been adopted in optics, offering robust waveguiding and angular momentum sorting. The success of valley systems in photonic crystals suggests a plasmonic counterpart that can merge topological photonics and topological condensed matter systems, for instance, two-dimensional materials with the enhanced light-matter interaction. However, a valley plasmonic waveguide with a sufficient propagation distance in the near-infrared (NIR) or visible spectral range was challenging due to ohmic loss inside the metal. My colleagues and I employed gap surface plasmons for high index contrasting and realized a wide-bandgap valley plasmonic crystal, allowing waveguiding in the NIR–visible range. The edge mode with a propagation distance of 5.3 μm in the range of 1.31–1.36 eV was experimentally confirmed by visualizing the field distributions with a scanning transmission electron microscope CL technique, suggesting a practical platform for transferring angular momentum between photons and carriers in mesoscopic active devices [1]. The second topic is time-correlation CL applied to halide perovskites. Time-resolved or time-correlation CL has an attractive potential to reveal carrier dynamics at the nanoscale. However, halide perovskites, which are promising optoelectronic materials, exhibit significantly different decay dynamics in their CL and photoluminescence (PL). My colleagues and I conducted time-correlation CL measurements of CsPbBr3 using Hanbury Brown-Twiss interferometry and compared them with time-resolved PL. The measured CL decay time was on the order of subnanoseconds and was faster than PL decay at an excited carrier density of 2.1 × 1018 cm–3. Our experiment and analytical model revealed the CL dynamics induced by individual electron incidences, which are characterized by highly localized carrier generation followed by a rapid decrease in carrier density due to diffusion. This carrier diffusion can play a dominant role in the CL decay time for undoped semiconductors, in general, when the diffusion dynamics are faster than the carrier recombination [2].
The last topic is plasmon enhanced luminescence nanoscopically visualized by CL. The extremely broadband excitation characteristics of electron beams can sometimes be detrimental. For example, in emitter-resonator systems, electron beams inevitably excite not only the emitters but also the coherent electromagnetic modes of the resonators. This problem has made it difficult for CL analysis to quantify luminescence from the emitter that enhanced by the resonators. Here, to discriminate incoherent emissions from coherent emissions in integrated emitter-resonator systems, a simple new method utilizing CL saturation is proposed.
 
Contact: Yongsoo Yang (yongsoo.yang@kaist.ac.kr)
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)
334 2019-12-13 13:30    Biophysics Mini-symposium at KAIST file
333 2019-12-18 16:00    Road to Higher Tc Superconductivity file
332 2019-12-27 15:00    The superconducting order parameter puzzle of Sr2RuO4 file
331 2019-12-27 15:00    The superconducting order parameter puzzle of Sr2RuO4 file
330 2020-01-17 16:00    Symmetry Breaking and Topology in Superfluid 3He file
329 2020-02-12 13:00    From inflation to new weak-scale file
328 2020-02-13 16:30    Enhanced Light-Matter Interactions in Graphene with Noble Metal Plasmonic Structures file
327 2020-02-20 16:00    Unconventional superconductivity in the locally non-centrosymmetric heavy-fermion CeRh2As2 file
326 2020-07-02 16:00    An irreversible qubit-photon coupling for the detection of itinerant microwave photons file
325 2020-08-17 20:00    Using magnetic tunnel junctions to compute like the brain file
324 2020-08-25 20:00    KAIST Global Forum for Spin and Beyond (Second Forum) file
323 2020-09-11 14:00    SRC Seminar file
322 2020-09-14 17:30    KAIST Global Forum for Spin and Beyond (Third Forum) file
321 2020-09-22 09:30    Physics and applications of soliton microcombs(Quantum- & Nano-Photonics) file
320 2020-09-24 09:00    (CAPP/IBS)Searching for Dark Matter with a Superconducting Qubit , Cryogenic Microwave Circuit Development at the NSTU file
319 2020-09-28 17:30    KAIST Global Forum for Spin and Beyond(Fourth Forum) file
318 2020-10-09 09:00    Quantum Many-Body Simulation file
317 2020-10-15 16:00    Graphene-based Josephson junction microwave bolometer file
316 2020-10-15 16:00    Towards resource-efficient and fault-tolerant quantum computation with nonclassical light
315 2020-10-15 17:00    Time crystals, quasicrystals, and time crystal dynamics in the superfluid universe file