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Method of fabricating anisometric metal needles and birefringent suspension thereof in dielectric fluid

机译:在电介质流体中制造等距金属针及其双折射悬架的方法

摘要

A grating (22) of narrow parallel ridges (24) is formed in the surface (26) of a substrate (20) made of a hard material such as silicon dioxide. Metal (40) is deposited onto the grating (22) perpendicular to the ridges (24) at an angle of approximately 45° to the surface (26) of the grating such that the metal (40) is deposited onto the top (24a) and one of the sides (24b) of the each of the ridges (24) to form generally L- shaped metal strips (12') thereon. The metal strips (12') are cut at periodic intervals along the ridges (24) to produce anisometric metal needles (12). The substrate (20) is immersed in a dielectric fluid (14), and ultrasonic energy is applied to cause the needles (12) to release from the substrate (20) into suspension in the fluid (14). The L-shape of the needles (12) makes them resistant to bending. The suspension ( 10) has birefringent properties similar to liquid crystals, but may be electrically switched at much higher speed. The index of refraction of the suspension (10) varies in accordance with the alignment of the needles (12), thereby enabling the direction and phase of an electromagnetic wave propagating through the suspension (1) to be controlled by varying the magnitude of the applied electric field.
机译:在由诸如二氧化硅的硬质材料制成的基板(20)的表面(26)中形成有狭窄的平行脊(24)的光栅(22)。金属(40)以与光栅的表面(26)成大约45°的角度垂直于脊(24)沉积在光栅(22)上,使得金属(40)沉积在顶部(24a)上每个脊(24)的侧面(24b)之一在其上形成大体L形的金属条(12')。沿着脊(24)以周期性间隔切割金属条(12')以产生等距的金属针(12)。将衬底(20)浸没在介电流体(14)中,并且施加超声波能量以使针(12)从衬底(20)释放成悬浮在流体(14)中。针(12)的L形使其抗弯曲。悬浮液(10)具有类似于液晶的双折射特性,但是可以以更高的速度进行电切换。悬架(10)的折射率根据针(12)的对准而变化,从而能够通过改变施加的大小来控制通过悬架(1)传播的电磁波的方向和相位。电场。

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