Observation of electronic modes in open cavity resonator

The resemblance between electrons and optical waves has strongly driven the advancement of mesoscopic physics, evidenced by the widespread use of terms such as fermion or electron optics. However, electron waves have yet to be understood in open cavity structures which have provided contemporary opt...

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Veröffentlicht in:Nature communications 2023-01, Vol.14 (1), p.415-415, Article 415
Hauptverfasser: Jung, Hwanchul, Park, Dongsung T., Lee, Seokyeong, Kim, Uhjin, Yang, Chanuk, Kim, Jehyun, Umansky, V., Kim, Dohun, Sim, H.-S., Chung, Yunchul, Choi, Hyoungsoon, Choi, Hyung Kook
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Sprache:eng
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Zusammenfassung:The resemblance between electrons and optical waves has strongly driven the advancement of mesoscopic physics, evidenced by the widespread use of terms such as fermion or electron optics. However, electron waves have yet to be understood in open cavity structures which have provided contemporary optics with rich insight towards non-Hermitian systems and complex interactions between resonance modes. Here, we report the realization of an open cavity resonator in a two-dimensional electronic system. We studied the resonant electron modes within the cavity and resolved the signatures of longitudinal and transverse quantization, showing that the modes are robust despite the cavity being highly coupled to the open background continuum. The transverse modes were investigated by applying a controlled deformation to the cavity, and their spatial distributions were further analyzed using magnetoconductance measurements and numerical simulation. These results lay the groundwork to exploring matter waves in the context of modern optical frameworks. Electron optics draws upon the resemblance between electron and optical waves. Here, the authors report on the observation of electron mode formation in open cavity resonators realized in a GaAs/AlGaAs two-dimensional electronic gas.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-023-36012-2