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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Theory of the acoustic radiation force exerted on a sphere by standing and quasistanding zero-order Bessel beam tweezers of variable half-cone angles
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Theory of the acoustic radiation force exerted on a sphere by standing and quasistanding zero-order Bessel beam tweezers of variable half-cone angles

机译:可变半圆锥角的站立和准零阶贝塞尔光束镊子在球上施加的声辐射力的理论

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A rigorous theory is developed to predict the radiation force (RF) exerted on a sphere immersed in an ideal fluid by a standing or quasistanding zero-order Bessel beam of different half-cone angles. A standing or a quasistanding acoustic field is the result of counter propagating 2 equal or unequal amplitude zero-order Bessel beams, respectively, along the same axis. Each Bessel beam is characterized by its halfcone angle ;2;l;l = 1, 2 of its plane wave components, such that ;2;l = 0 represents a plane wave. Analytical expressions of RF are derived for a homogeneous viscoelastic sphere chosen as an example. RF calculations for a polyethylene sphere immersed in water are performed. Particularly, the half-cone angle dependency on the RF is analyzed for standing and quasistanding waves. Changing the half-cone angle is equivalent to changing the beamwidth. Potential applications include particle manipulation in microfluidic lab-on-chips as well as in reduced gravity environments.
机译:发展了严格的理论来预测通过不同半锥角的直立或准零阶贝塞尔光束对浸没在理想流体中的球体施加的辐射力(RF)。静态或准静态声场是分别沿同一轴反向传播2个相等或不等幅的零阶贝塞尔光束的结果。每个贝塞尔光束的特征在于其半圆锥角; 2; l; l = 1,2的平面波分量,因此,; 2; l = 0表示平面波。对于一个均质的粘弹性球体,导出了RF的解析表达式。进行浸入水中的聚乙烯球的RF计算。特别是,针对驻波和准驻波分析了半锥角对RF的依赖性。改变半锥角等同于改变光束宽度。潜在的应用包括微流控芯片实验室以及重力降低环境中的粒子处理。

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