Optical Modes in Elliptical Microcavities for Single-Photon Sources

A theory of optical modes in an elliptical microcavity has been developed using Mathieu functions in elliptical coordinates. A key difference from the circular case is the splitting of doubly degenerate modes. Split optical modes have been numerically calculated and their symmetry has been determine...

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Veröffentlicht in:Pisʹma v žurnal êksperimentalʹnoj i teoretičeskoj fiziki 2023-03, Vol.117 (5-6 (3)), p.414-419
Hauptverfasser: Kazanov, D. R, Monakhov, A. M
Format: Artikel
Sprache:eng
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Zusammenfassung:A theory of optical modes in an elliptical microcavity has been developed using Mathieu functions in elliptical coordinates. A key difference from the circular case is the splitting of doubly degenerate modes. Split optical modes have been numerically calculated and their symmetry has been determined. A method has been proposed to choose the parameters of a cavity for a certain wavelength. The difference between the energies of optical modes in the cavity with metallic walls and in the dielectric cavity is no more than ~20%. The dispersion relations of optical modes show the possibility of degeneracy of modes with different symmetries, which allows the spectral and polarization filtering of radiation of single-photon sources and the fabrication of sources of multiply entangled states.
ISSN:0370-274X
DOI:10.31857/S1234567823060046