2022
DOI: 10.1088/1555-6611/ac756d
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Phase control of optical Goos–Hänchen shifts in a quantum dot nanostructure via high refractive index

Abstract: We proposed a model for adjusting Goos–Hänchen (GH) shifts in a cavity with quantum dot (QD) nanostructure in this letter. The actual component of the susceptibility was studied by analytical solution of the coherence term of the density matrix elements, and the refractive index of the QD nanostructure was explored. We discovered that the intracavity medium became phase sensitive because of the electron tunneling action. As a result, the relative phase of applied lights may be used to manipulate the medium’s r… Show more

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