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    • https://phys.libretexts.org/Bookshelves/Electricity_and_Magnetism/Essential_Graduate_Physics_-_Classical_Electrodynamics_(Likharev)/08%3A_Radiation_Scattering_Interference_and_Diffraction/8.06%3A_Fresnel_and_Fraunhofer_Diffraction_Patterns
      & \equiv \exp \frac{i k x^{2}}{2 z} \int_{-a / 2}^{+a / 2} \exp \left\{-\frac{i k x x^{\prime}}{z}\right\} d x^{\prime}=\frac{2 z}{k x} \exp \left\{\frac{i k x^{2}}{2 z}\right\} \sin \frac{k x a}{2 z}...& \equiv \exp \frac{i k x^{2}}{2 z} \int_{-a / 2}^{+a / 2} \exp \left\{-\frac{i k x x^{\prime}}{z}\right\} d x^{\prime}=\frac{2 z}{k x} \exp \left\{\frac{i k x^{2}}{2 z}\right\} \sin \frac{k x a}{2 z},
    • https://phys.libretexts.org/Bookshelves/Optics/Physical_Optics_(Tatum)/03%3A_The_Cornu_Spiral/3.01%3A_Cornu's_Spiral
      Cornu’s spiral is a graphical device that enables us to compute and predict the Fresnel diffraction pattern from various simple obstacles.

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