Abstract

We present the design and theoretical simulation of a nano-range optical structure with an elliptical solid immersion lens (e-SIL) in a rectangular diamond substrate containing nitrogen–vacancy (NV) center in diamond. We have varied the numerical aperture of the objective lens and collected photons with a maximum collection efficiency of ∼88% for NA=1. The far field variations have been studied over a wide range of emission spectra of nitrogen–vacancy center in diamond. This highly efficient single-photon emitter has a wide range of applications in the field of nanoscale magnetic sensing and quantum information devices.

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