Simultaneous Determination of Transition Dipole Moment Orientation and Refractive Index in Morphologically Non-Uniform Nanoscale Films

  • Shin, Donghyeon
  • Cho, Seungyeon
  • Lee, Jaehyun
  • Choi, Kyusung
  • Jun, Jinwon
  • ... Lee, Jun Yeob
  • 외 8명
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초록

A high-precision, single-shot technique simultaneously quantifies the refractive index and transition dipole moment orientation in nanoscale emissive films using Fourier imaging microscopy. Direct capture of momentum-space (k-space) emission patterns in a polarization-resolved setup enables characterization of anisotropic optical properties. This approach overcomes limitations of conventional ellipsometry and angle-dependent photoluminescence measurements, which typically require predefined refractive index models and atomically smooth interfaces. The method determines anisotropic refractive indices and in-plane transition dipole moment orientations across various emissive systems, including organic films, quasi-2D perovskite layers, and quantum dot layers, even in the presence of nanoscale morphological disorder. The experimental result yields parameters with a precision of within 1% and 0.01 for transition dipole moment orientation and refractive index, respectively. The measured refractive index shows good agreement with conventional ellipsometry measurements. The extracted parameters strongly correlate with enhancements in optical outcoupling efficiency. These findings highlight the utility of Fourier imaging microscopy as a diagnostic tool for designing and optimizing next-generation optoelectronic devices.

키워드

anisotropic optical propertiesfourierFourier imaging microscopynanoscale filmsperovskite filmsquantum dotsrefractive indicestransition dipole momentsLIGHT-EMITTING-DIODESLUMINESCENT EXCITONSEMISSION
제목
Simultaneous Determination of Transition Dipole Moment Orientation and Refractive Index in Morphologically Non-Uniform Nanoscale Films
저자
Shin, DonghyeonCho, SeungyeonLee, JaehyunChoi, KyusungJun, JinwonShin, Min-GonShin, Dong JinKim, SeokhoMyoung, Jae-MinLee, Jun YeobLee, JaesangAhn, NamyoungLee, KyusangKim, Jongchan
DOI
10.1002/adom.202502019
발행일
2025-09
유형
Article; Early Access
저널명
Advanced Optical Materials
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