2021Unpublished venueRequires access

Quantum Sensing of Photonic Spin Density using a Single Nitrogen-Vacancy Center

Farid Kalhor, Li‐Ping Yang, Leif Bauer, Zubin Jacob

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Abstract

We demonstrate that the nitrogen-vacancy center in diamond can be used as a quantum sensor for detecting photonic spin density (PSD). The direct detection of PSD at the nanoscale opens a new frontier for studying exotic phases of photons as well as future on-chip applications.

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What this paper is about

We demonstrate that the nitrogen-vacancy center in diamond can be used as a quantum sensor for detecting photonic spin density (PSD). The direct detection of PSD at the nanoscale opens a new frontier for studying exotic phases of photons as well as future on-chip applications.

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Available abstract

We demonstrate that the nitrogen-vacancy center in diamond can be used as a quantum sensor for detecting photonic spin density (PSD). The direct detection of PSD at the nanoscale opens a new frontier for studying exotic phases of photons as well as future on-chip applications.

Key concepts: Nitrogen-vacancy center, Diamond, Photonics, Quantum sensor, Vacancy defect, Photon, Optoelectronics, Materials science

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