Unstable-resonator-mode derivation using virtual-source theory
W. H. Southwell
Abstract
W. H. Southwell
Abstract
An intuitive technique has been developed in which the lowest- and the higher-order modes for unstable resonators having rectangular or circular mirrors are derived. Instead of two mirrors, it considers the resonator to consist of a train of diffractive edges that are virtual images of the edge of the feedback mirror. Circular-mirror unstable resonators are shown not to exhibit the exact geometrical mode even at high Fresnel numbers.
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An intuitive technique has been developed in which the lowest- and the higher-order modes for unstable resonators having rectangular or circular mirrors are derived. Instead of two mirrors, it considers the resonator to consist of a train of diffractive edges that are virtual images of the edge of the feedback mirror. Circular-mirror unstable resonators are shown not to exhibit the exact geometrical mode even at high Fresnel numbers.
Key concepts: Resonator, Fresnel number, Optics, Physics, Curved mirror, Mode (computer interface), Fresnel diffraction, Plane mirror