Affiliation: | aUniversité des Sciences et de la Technologie Houari Boumediène, Faculté de Physique, Laboratoire d’électronique Quantique, BP 32 El Alia, Bab Ezzouar, 16023 Algiers, Algeria bCentre Interdisciplinaire de Recherche Ions Laser, Ismra, 6 bd. Maréchal Juin, F14 050 Caen, France cGroupe d’Optique et d’Optronique, Coria, Avenue de l’Université, Site Universitaire du Madrillet, BP 12, F76 801 Saint Etienne du Rouvray, France |
Abstract: | The aim of this paper is to highlight the added value of the generalized Gouy phase shift introduced by Siegman. Although suited for optical systems study, including those more complex than free space, we note that it did not meet the use that it deserves so far. The analysis of the whole of the ideas and analytical approaches associated to the important concept of the Gouy phase proves its effectiveness. Usually, the resonance condition is systematically built on the basis of the equivalent empty cavity. Unfortunately, this approach does not cover some of the useful parameters of the real resonator. By means of the generalized Gouy phase and the self-consistent complex parameter q, we derive here a new approach for the calculation of the resonance condition for the real cavity. Moreover, the use of the generalized Gouy phase clearly simplifies the study of resonators, while making it possible to avoid the use of the Huygens’ Fresnel integral. |