Analysis of Diffraction Spectrum by Fresnel-Kirchhoff Integral and Half-wave Zone Theorem
Shi Jun You
Abstract
Shi Jun You
Abstract
The essential of diffraction spectrum is superposition by infinite secondary waves based on Huggens-Fresnel principle.Fresnel-Kirchhoff integral was used to calculate the intensity of diffraction spectrum,but the integral was very complicated.In order to predigest the calculated process,Fresnel half-wave zone theorem was introduced.The calculate integral was translated into superposition by amplitude vector.So the Fresnel-Kirchhoff integral was transformed to Fresnel halfwave zone when analyzed the diffraction spectrum.The optical path difference is half wavelength at adjacent half-wave zone and the phase difference is π,so the vibration of adjacent half-wave zone at field point is canceled each other.The intensity of light at field point is strengthened by odd half-wave zone,whereas it is cancellation.
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The essential of diffraction spectrum is superposition by infinite secondary waves based on Huggens-Fresnel principle.Fresnel-Kirchhoff integral was used to calculate the intensity of diffraction spectrum,but the integral was very complicated.In order to predigest the calculated process,Fresnel half-wave zone theorem was introduced.The calculate integral was translated into superposition by amplitude vector.So the Fresnel-Kirchhoff integral was transformed to Fresnel halfwave zone when analyzed the diffraction spectrum.The optical path difference is half wavelength at adjacent half-wave zone and the phase difference is π,so the vibration of adjacent half-wave zone at field point is canceled each other.The intensity of light at field point is strengthened by odd half-wave zone,whereas it is cancellation.
Key concepts: Fresnel integral, Zone plate, Kirchhoff's diffraction formula, Fresnel zone, Fresnel diffraction, Diffraction, Fresnel number, Superposition principle