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不同单体形状生物粒子凝聚体消光特性的差异分析

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针对生物粒子凝聚体单体形状和光学特性的复杂多变,构建了5种不同单体形状的生物粒子凝聚体空间结构,并用离散偶极子近似方法计算了生物粒子凝聚体的消光特性参数,分析了不同单体形状生物粒子凝聚体的消光特性差异。计算结果表明:非球形生物粒子凝聚体在将其单体形状等效为球形时,平均质量消光系数的相对偏差绝对值在6%以内;不同单体形状生物粒子凝聚体对光的散射能力不同是消光特性存在差异的主要表现,且通常情况下单体形状越偏离球形,相对偏差越大,因此,由不同单体形状引起的消光特性的差异不应被忽略。此项工作可应用于准确评估和优化生物粒子材料的消光性能。
Difference in Extinction Characteristics of Bioparticle Aggregates with Different Monomer Shapes
Objective Biological particle materials have significant wide-band extinction performance,and the monomer shapes of bioparticles are complex with some irregular non-spherical shapes.However,the differences in extinction characteristics of bioparticle aggregates with different monomer shapes are still uncertain and have been ignored in previous research.Thus,we build bioparticle aggregation models with different monomer shapes to calculate the extinction coefficients in the 3-5 μm and 8-14 μm wavebands and analyze the differences in extinction characteristics caused by monomer shapes.Methods Five typical monomer shapes are constructed by employing multi-sphere models in terms of the scanning electron microscopy(SEM)images,and the complex refractive indices(CRIs)of three biomaterials are calculated according to Kramers-Kronig relations based on specular reflectance in the 2.5-25.0 μm waveband.A novel simulation code or non-spherical particle aggregation(NSPA)model is applied to build realistic spatial structure models of bioparticle aggregates with different monomer shapes.To eliminate the influence of spatial structure density,we select the bioparticle aggregates with the same porosity of 0.840 to obtain the extinction characteristics.The discrete dipole approximation(DDA)method is adopted to calculate average mass extinction coefficientαext,average mass absorption coefficient αabs,and average mass scattering coefficientαscain the 3-5 μm and 8-14 μm wavebands respectively.Then the differences in extinction characteristics of the bioparticle aggregates with different monomer shapes can be analyzed.Results and Discussions According to the calculation results,the influence of the monomer size,monomer number,CRI,and aspect ratio(AR)on the absorption and scattering effects of bioparticle aggregates with different monomer shapes is investigated.The results show that the closer size of bioparticle aggregates to the wavelength of incident light leads to stronger scattering of incident light by bioparticle aggregates.For bioparticle materials with monomer particle sizes ranging from 0.5 to 3.0 μm,the extinction ability in the 3-5 μm waveband is significantly stronger than that in the 8-14 μm waveband(Figs.6 and 7).When the monomer diameter is 2.0 μm,the αext of bioparticle aggregates with different monomer shapes are about 0.820-0.850 m2/g in the 3-5 μm waveband(Fig.8)and about 0.430-0.470 m/g in the 8-14 μm waveband(Fig.9).Within a certain range,an increase in monomer size enhances scattering effects(Fig.6),but the trend of absorption and scattering effects is usually opposite.In the 3-5 μm waveband,the relative deviation of αext,αabs and αsca can reach about-6%,-1.3%,and-14%respectively(Figs.6 and 8).In the 8-14 μm waveband,the relative deviation of αext,αabs and αsca can reach about-3.3%,-1.2%,and-14%respectively(Figs.7 and 9).There are indeed differences in the optical properties of bioparticle aggregates with different monomer shapes.For the bioparticle aggregates with the monomer shape of pancake,when the monomer number is 15,the relative deviation of αext and αsca can reach-2.8%and-6.1%,but under the monomer number of 60,the relative deviation has reduced by more than 50%(Fig.8).As the monomer number increases,the specific surface area differences of the overall spatial structure among bioparticle aggregates with different monomer shapes become smaller,and the scattering differences of bioparticle aggregates with different monomer shapes are relatively weakened.The extinction abilities of biological particle aggregates are more sensitive to CRI(Figs.10 and 11).Therefore,the actual relative deviation in the extinction characteristics of bioparticle aggregates is not directly determined by the degree to which the monomer shape deviates from the spherical shape,but by the specific result of the combined effect of absorption and scattering.As the AR of ellipsoid rises,the absorption changes slightly while the scattering ability declines significantly(Figs.12 and 13).Additionally,the results in the case of similar monomer shapes also demonstrate that the scattering differences caused by monomer shapes are indeed related to the degree to which the monomer shape deviates from the spherical shape.Conclusions We construct bioparticle aggregates with five typical monomer shapes and calculate and compare the extinction characteristic parameters of them under the influence of multiple factors.The results indicate that there are great differences in the extinction characteristics of bioparticle aggregates with different monomer shapes,which is mainly caused by the differences in light scattering.Meanwhile,generally the more deviation of the monomer shape from the sphere causes greater differences in extinction characteristic of bioparticle aggregates,but the specific magnitude of the relative deviation of the extinction characteristic parameters is the coupling result of various factors such as monomer size,monomer number,and CRI.Our study is of significance for accurately evaluating and optimizing the extinction performance of biological particle materials.

bioparticle materialsmonomer shapeaggregatesinfraredextinction characteristics

陈国龙、顾有林、胡以华、孟凡昊、张熙

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国防科技大学脉冲功率激光技术国家重点实验室,安徽合肥 230037

国防科技大学,安徽合肥 230037

先进激光技术安徽省实验室,安徽合肥 230037

生物粒子材料 单体形状 凝聚体 红外 消光特性

国家自然科学基金先进激光技术安徽省实验室项目

6207524120191003

2024

光学学报
中国光学学会 中国科学院上海光学精密机械研究所

光学学报

CSTPCD北大核心
影响因子:1.931
ISSN:0253-2239
年,卷(期):2024.44(3)
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