Solving method and system for light diffraction transmission problem

A light and problem technology, which is applied in the field of solving methods and systems for light diffraction transmission problems, can solve problems such as difficult direct application and inapplicability, and achieves the effect of strong practicability and simple realization.

Active Publication Date: 2020-11-20
INST OF APPLIED PHYSICS & COMPUTATIONAL MATHEMATICS +1
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Problems solved by technology

[0003] The existing method has no problem in calculating the light in the process of straight line transmission, but in some cases, when it is necessary to calculate the diffractive transmission in the beam reflection process, the existing method will not be directly applicable, especially for the light in non-parallel planes In the process of propagation, multiple reflections are involved, and the traditional solution method of light field diffraction transmission cannot be applied

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  • Solving method and system for light diffraction transmission problem
  • Solving method and system for light diffraction transmission problem
  • Solving method and system for light diffraction transmission problem

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Embodiment Construction

[0034] The principles and features of the present invention will be described below in conjunction with the accompanying drawings, and the examples given are only used to explain the present invention, and are not intended to limit the scope of the present invention.

[0035] For the calculation of light field diffraction along a straight line, the method of fast Fourier transform plus propagators can be used directly. For the diffraction transmission including the beam reflection process, the existing methods are difficult to apply directly.

[0036] like Figure 8 As shown in , an exemplary single-reflection ray propagation diagram is provided, and the calculation area grid is still constructed perpendicular to the initial ray according to the existing method. For the main ray, in the real space, he can perform operations such as tracing rays, reflections, etc., but for rays that are in the virtual space from the beginning, further processing is required.

[0037] For a sin...

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Abstract

The invention discloses a solving method and system for a light diffraction transmission problem, and relates to the field of optics. The method comprises the steps of constructing a calculation region grid; tracing the main light in the calculation area grid, and expanding the first interface of the crystal through which the main light passes into an infinite plane; tracing other light in the calculation area grid, and determining intersection points of the other light and the infinite large plane; judging whether the other light and the main light are on the same side or not according to theintersection points, if not, generating virtual light of the other light, wherein the virtual light is supposed to be propagated in the crystal and follows the same physical propagation rule as the main light; and solving a diffraction transmission problem according to the main light and the virtual light. The method can be used for the diffraction transmission calculation process of plane reflection of any shape, has the advantage of high practicability, and solves the problem that a traditional light field diffraction transmission solving method cannot be applied to the propagation processof light in an unparallel plane.

Description

technical field [0001] The invention relates to the field of optics, in particular to a method and system for solving light diffraction transmission problems. Background technique [0002] The traditional calculation of light field diffraction transmission usually uses the method of fast Fourier transform and propagator. First, a calculation area of ​​the light field is constructed, which is usually more than 1.5 times larger than the actual area of ​​the light field, so as to avoid the influence of diffraction caused by the boundary on the calculation results. like figure 2 As shown, a schematic diagram of diffraction transmission when light is directly transmitted is provided. The calculation area grid is transferred to the frequency space after FFT, and the propagators of the dz distance are superimposed, and then the inverse FFT is performed to return to the position space. At this point, you can add amplification and absorption processes in the position space, and then...

Claims

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Application Information

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IPC IPC(8): G02B27/42
CPCG02B27/4266
Inventor 刘勤勇刘晓萌
Owner INST OF APPLIED PHYSICS & COMPUTATIONAL MATHEMATICS
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