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声贝塞尔类光束形成的索雷尔带光阑偏光镜的设计。

Design of Acoustical Bessel-Like Beam Formation by a Pupil Masked Soret Zone Plate Lens.

机构信息

Centro de Tecnologías Físicas, Universitat Politècnica de València, Camí de Vera s/n, 46022 València, Spain.

Radiophysical department, Tomsk State University, 30 Lenin Avenue, Tomsk 634050, Russia.

出版信息

Sensors (Basel). 2019 Jan 17;19(2):378. doi: 10.3390/s19020378.

Abstract

The image performance of acoustic and ultrasound sensors depends on several fundamental parameters such as depth of focus or lateral resolution. There are currently two different types of acoustic diffractive lenses: those that form a diffraction-limited spot with a shallow depth of focus (zone plates) and lenses that form an extended focus (quasi-Bessel beams). In this paper, we investigate a pupil-masked Soret zone plate, which allows the tunability of a normalized angular spectrum. It is shown that the depth of focus and the lateral resolution can be modified, without changing the lens structure, by choosing the size of the pupil mask. This effect is based on the transformation of spherically-converging waves into quasi-conical waves, due to the apodization of the central part of the zone plate. The theoretical analysis is verified with both numerical simulations and experimental measurements. A Soret zone plate immersed in water with D/2F = 2.5 and F = 4.5 λ changes its depth of focus from 2.84 λ to 5.9 λ and the lateral resolution increases from 0.81 λ to 0.64 λ at a frequency of 250 kHz, by modifying the pupil mask dimensions of the Soret zone plate.

摘要

声和超声传感器的图像性能取决于几个基本参数,如焦点深度或横向分辨率。目前有两种不同类型的声衍射透镜:一种是形成具有浅焦点深度(位相板)的衍射受限光斑,另一种是形成扩展焦点(拟贝塞尔光束)的透镜。本文研究了一种掩模扇形索累尔位相板,它可以调节归一化角谱。结果表明,通过选择光瞳掩模的尺寸,可以在不改变透镜结构的情况下,改变焦点深度和横向分辨率。这种效应是基于位相板中心部分的变迹作用,将球对称会聚波转换为拟共锥波。理论分析通过数值模拟和实验测量得到了验证。当将一个浸没在水中的 D/2F = 2.5 和 F = 4.5 λ 的索累尔位相板的光瞳掩模尺寸修改为 0.5 λ 时,其焦点深度从 2.84 λ 变为 5.9 λ,在 250 kHz 的频率下,横向分辨率从 0.81 λ 增加到 0.64 λ。

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