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Partially coherent light beam generation method, measurement method and device of vector special correlation

A technology of coherent beams and measurement methods, applied in the field of lasers, can solve problems such as complex operation, large loss, and low efficiency, and achieve the effect of simple and accurate correlation structure and solving generation difficulties

Active Publication Date: 2022-06-24
SHANDONG NORMAL UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, these two methods have disadvantages such as low efficiency, large loss, and complicated operation. Therefore, it is necessary to find an effective and simple method for measuring the correlation structure of partially coherent beams with special correlation of vectors.

Method used

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  • Partially coherent light beam generation method, measurement method and device of vector special correlation
  • Partially coherent light beam generation method, measurement method and device of vector special correlation
  • Partially coherent light beam generation method, measurement method and device of vector special correlation

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Embodiment 1

[0035] The purpose of this embodiment is to provide a method for generating a partially coherent beam with special correlation of vectors.

[0036] A method for generating partially coherent beams with special correlation of vectors, including:

[0037] Expanding and collimating the generated laser beam, and splitting the expanded and collimated laser beam into two beams with different orthogonal components;

[0038] Load a special coherent structure on the two beams respectively;

[0039] Strictly superimpose two beams loaded with special coherent structures to obtain vector fully coherent beams;

[0040] splitting the vector perfectly coherent beam to obtain reference light and signal light respectively;

[0041] The signal light is incident on the rotating ground glass sheet to obtain completely incoherent light;

[0042] The completely incoherent light is filtered and shaped to obtain a partially coherent light beam with a specific correlation of the vectors.

[0043] ...

Embodiment 2

[0069] The purpose of this embodiment is to provide a partially coherent beam generating device with special correlation of vectors.

[0070] A partially coherent beam generating device with special vector correlation, comprising a laser, a polarization beam splitter, a spatial light modulator, a first beam splitter and a ground glass sheet;

[0071] The laser light generated by the laser is incident on the polarization beam splitter, the two beams obtained by the beam splitter by the polarization beam splitter are incident on the spatial light modulator, and the two beams loaded with the special coherent structure output by the spatial light modulator are incident on To the polarizing beam splitter, the vector fully coherent beam output by the polarizing beam splitter is split by the first beam splitter to obtain reference light and signal light, and the signal light is incident on the rotating frosted glass to generate completely incoherent light, The completely incoherent l...

Embodiment 3

[0073] The purpose of this embodiment is to provide a method for measuring a partially coherent beam with special correlation of vectors, which is based on the above-mentioned method for generating a partially coherent beam with special correlation of vectors, including:

[0074] After the obtained reference light is reflected, the partially coherent light beams that are specially associated with the vector are superimposed to obtain a vector mixed light beam; the vector mixed light beam is divided into beams to obtain reflected light and transmitted light;

[0075] The reflected light and the transmitted light reach the charge-coupled device through polarizers with preset polarizing angles, respectively; the intensity distribution during the photoelectric coupling is respectively recorded, and the three-dimensional distribution of the real part of the normalized vector partial coherence structure function is obtained;

[0076] The reference light is blocked, and the reflected ...

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Abstract

The disclosure provides a vector-specific correlation partially coherent beam generation method, measurement method and device, including expanding and collimating the generated laser beam, and splitting the expanded and collimated laser beam into two beams with different orthogonal components The beams are loaded with special coherent structures respectively; the two beams loaded with special coherent structures are strictly superimposed to obtain vectorially coherent beams; the vectorially coherent beams are split to obtain reference beams and signal beams respectively light; the signal light is incident on a rotating ground glass plate to obtain completely incoherent light; the completely incoherent light is filtered and shaped to obtain a partially coherent light beam with special vector correlation; at the same time, based on the photoelectric coupling period, the mixed light beam is The real part and the imaginary part of the structure function of the vector partial coherent beam are obtained from the intensity gray level distribution diagram of a receiving device, and the measurement of the vector partial coherent beam is realized.

Description

technical field [0001] The present disclosure belongs to the field of laser technology, and in particular, relates to a method for generating a partially coherent beam with special vector correlation, a method for measuring and a device. Background technique [0002] The statements in this section merely provide background information related to the present disclosure and do not necessarily constitute prior art. [0003] Partially coherent beams, as an important complement to fully coherent beams, have the advantage of alleviating the random fluctuations of the beams, which coincides with the requirement of beam stability in free-space communications. Over the years, research on partially coherent light has shown that it can reduce beam speckle compared to fully coherent light, reduce beam scintillation in linear random media (such as atmospheric turbulence), spot drift, and improve imaging resolution in the imaging field, etc. advantage. In addition, the specially correla...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G02B27/10
CPCG02B27/106
Inventor 魏华哲李晓飞刘显龙蔡阳健
Owner SHANDONG NORMAL UNIV
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