Evgenij Zubko
경희대학교 물리학과 · 물리·천문학
Evgenij Zubko 교수의 연구실은 광학적 특성과 전자기파 산란을 중심으로, 특히 혜성과 행성계 미세먼지 입자의 복잡한 구조와 물리적 성질이 빛과의 상호작용에 미치는 영향을 연구합니다. 주로 이산 두상 근사(DDA)와 슈퍼포지션 T행렬법(STMM)를 활용해 비정형 입자, 응집입자, 다공성 입자의 광학적 성질을 정량적으로 분석하며, 특히 근접 후방산란 영역에서의 부정적 편광과 반사율의 위상 의존성을 규명합니다. 이는 혜성 먼지의 구성과 태양계 형성 이론에 대한 통찰을 제공합니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
We consider electromagnetic scattering by a spherical volume sparsely and randomly populated by spherical particles of equal size and optical properties. The far-field scattering matrix of the entire volume is computed using an exact method and an approximate method. The former is a direct computer solver of the Maxwell equations called the superposition T-matrix method (STMM). The latter is a solver based on numerical Monte Carlo integration of the ladder and cyclical diagrams appearing in the
There are two widely accepted restrictions on the application of the discrete dipole approximation (DDA) in the study of light scattering by particles comparable to the wavelength: (1) when considering dielectric particles, the size of the cells must satisfy the condition kd|m|<0.5, where k is the wavenumber, d is the size of the cells, and m is the complex refractive index of the constituent material and (2) when considering conductive particles, the size of the cells must be small enough to re
We used the discrete dipole approximation to study the backscattering of agglomerate particles consisting of oblong monomers. We varied the aspect ratio of the monomers from approximately 1 (sphere) to 4, while we kept the total particle volume equivalent to that of an x = 10 sphere for m = 1.59 + i0 and 1.50 + i0 and considered two values of agglomerate packing density: rho = 0.25 and rho = 0.1. We found that these particles do not display a prominent brightness opposition effect but do produce
The low abundance of refractory carbonaceous material in samples collected by Stardust in comet 81P/Wild 2 coma was completely unexpected. If these results are universal to other comets, this necessitates a reformulation of current models of solar system formation. A polarimetric imaging analysis demonstrates that dust is not uniformly distributed within cometary coma, and that the circumnucleus halo region where the dust samples were collected must contain a low population of carbonaceous parti
We analyse the photopolarimetric response measured in Comet C/1975 V1 (West) using model agglomerated debris particles. Such particles have highly irregular morphology and volume density with properties that are consistent with the samples retrieved by Stardust from Comet 81P/Wild 2. We find that an entire set of observational data including phase function, phase dependence of the degree of linear polarization, photometric, and polarimetric colour in Comet C/1975 V1 (West) can be quantitatively