首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Radiation forces on dielectric and absorbing particles studied via the finite-difference time-domain method
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Radiation forces on dielectric and absorbing particles studied via the finite-difference time-domain method

机译:通过时域有限差分法研究介电和吸收粒子上的辐射力

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Using the three dimensional finite-difference time-domain (FDTD) method, we calculate the radiation force from an incident plane wave on both dielectric and absorbing particles in the Lorentz-Mie regime via the Max-well stress tensor approach. We find that the radiation force changes with particle permittivity, and we categorize the force into three regions: increasing, fluctuating, and constant. We discuss how particle size, shape, orientation and absorption affect the radiation force. A nanoscale solar sail is proposed based on our calculation. A detailed understanding of the optical force of a plane wave on particles in the Lorentz-Mie regime is fundamental for designing nanoscale solar sail systems and optical traps from a set of interfering plane waves.
机译:使用三维有限差分时域(FDTD)方法,我们通过最大阱应力张量方法,从洛伦兹-米氏体系中的介质和吸收粒子上的入射平面波计算辐射力。我们发现辐射力随粒子介电常数变化,并将辐射力分为三个区域:增加,波动和恒定。我们讨论了粒径,形状,取向和吸收如何影响辐射力。根据我们的计算,提出了纳米尺度的太阳帆。洛伦兹-米氏体系中的平面波对粒子的光学力的详细理解,对于根据一组干扰平面波设计纳米级太阳帆系统和光阱至关重要。

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