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Method and device for generating radial or angled polarization self-focusing Airy beam

An Airy beam and angular polarization technology, applied in optics, optical components, instruments, etc., can solve problems such as not being suitable for capture, and achieve the effects of easy adjustment, good stability, and simple device structure

Inactive Publication Date: 2014-11-05
SUZHOU UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The self-focusing Airy beam is a solid beam at the focal point. When it is specifically applied to the optical confinement of particles, it can only capture those particles whose refractive index is larger than the surrounding medium at the focal point, and is not suitable for capturing particles whose refractive index is smaller than the surrounding medium.

Method used

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  • Method and device for generating radial or angled polarization self-focusing Airy beam
  • Method and device for generating radial or angled polarization self-focusing Airy beam
  • Method and device for generating radial or angled polarization self-focusing Airy beam

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Embodiment 1

[0030] See attached figure 1 , which is a structural schematic diagram of a radially and angularly polarized self-focusing Airy beam generating device provided in this embodiment, the device comprising: a laser 1, a polarizer 2, a beam splitter 3, a spatial light modulator 4, and a convex lens 6 , annular diaphragm 7, polarization converter 8, beam profiler 10, computers 5, 9 and 11.

[0031] A Gaussian beam is emitted by the laser 1. In the present embodiment, the laser 1 is a semiconductor pumped solid-state laser with adjustable power, the maximum power is 1.8W, and the wavelength is 532nm; the Gaussian beam is linearly polarized along the vertical direction through the polarizer 2. Gaussian beam; the linearly polarized Gaussian beam is divided into a reflected beam and a transmitted beam through the beam splitter 3, and the transmittance and reflection of the beam splitter 3 are both 50%, which can improve the energy utilization rate of the beam; the transmitted beam arriv...

Embodiment 2

[0041] According to the technical scheme of embodiment 1, a kind of radial and angularly polarized self-focusing Airy beam generating device is constructed. In this embodiment, the generation of angularly polarized self-focusing Airy beam is taken as an example, and the generated angularly polarized Airy beam is authenticating. The generation method and verification method are the same as those in Embodiment 1, only the mode 8 of the polarization converter in step 4 is adjusted to angular polarization, and then the angularly polarized self-focusing Airy beam is generated. During the verification, the polarization direction of the polarizer is adjusted to the vertical direction, and the light intensity distribution is taken at the propagation distance z=0, as shown in the attached Figure 10 As shown; the polarization direction of the polarizer is adjusted to the horizontal direction, and the light intensity distribution is taken at the propagation distance z=0 as attached Fi...

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Abstract

The invention relates to a method and a device for generating a radial or angled polarization self-focusing Airy beam. The method includes regulating polarization states of a collimating Gaussian beam to obtain a linear polarization Gaussian beam polarizing along a certain direction; performing light splitting to obtain a transmission beam, emitting the obtained transmission beam vertically to a spatial light modulator loaded with a phase information graph and then emitting the beam out in a reflecting manner after phase modulation; performing light splitting to obtain a reflected beam, subjecting the reflected beam to Fourier transformation and then converging the reflected beam by a convex lens so as to obtain a linear polarization self-focusing Airy beam through an annular stop at the focus point of the convex lens; and finally carrying out radial or angled polarization conversion to obtain the radial or angled polarization self-focusing Airy beam. By the method, self focusing can be carried out without any optical focusing elements, the light intensity in front of the focus point is low, the light intensity at the focus point is increased, energy is concentrated, and accurate positioning is achieved. The method can be applied to the fields of particle arrestance, biological medicines and the like, and belongs to the technical field of applied optics. In addition, the device is simple in structure and high in stability and is adjustable.

Description

technical field [0001] The invention relates to a method and a device for generating radially or angularly polarized self-focusing Airy beams. The generated beams can be used in the fields of particle capture, biomedicine, etc., and belong to the field of applied optics technology. Background technique [0002] Circularly symmetric Airy beams have aroused great interest and widespread attention due to their unique self-focusing properties, also known as self-focusing Airy beams. The so-called self-focusing refers to the focusing of the beam during the transmission process in free space or medium due to its own transmission properties without the aid of focusing optical elements. At the same time, the self-focusing phenomenon of the Airy beam is also very special. The light intensity of the beam is low before focusing, but the light intensity increases rapidly at the focus, and the energy is accelerated and concentrated. The maximum light intensity at the focus can reach the ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G02B27/28G02B27/09
Inventor 董元赵承良文伟蔡阳健
Owner SUZHOU UNIV
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