Coherent acoustic control of a single silicon vacancy spin in diamond

Marko Lončar, Linbo Shao, Smarak Maity, Neil Sinclair, Lu Zheng, Cleaven Chia, Keji Lai, Young-Ik Sohn, Srujan Meesala, Benjamin Pingault, Stefan Bogdanović, Michelle Chalupnik
2020-01-10

SCID:  54.1/yxfvb6yp
Phonons are considered to be universal quantum transducers due to their ability to couple to a wide variety of quantum systems. Among these systems, solid-state point defect spins are known for being long-lived optically accessible quantum memories. Recently, it has been shown that inversion-symmetric defects in diamond, such as the negatively charged silicon vacancy center (SiV), feature spin qubits that are highly susceptible to strain. Here, we leverage this strain response to achieve coherent and low-power acoustic control of a single SiV spin, and perform acoustically driven Ramsey interferometry of a single spin. Our results demonstrate an efficient method of spin control for these systems, offering a path towards strong spin-phonon coupling and phonon-mediated hybrid quantum systems.
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2020-01-10
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Marko Lončar
Linbo Shao
Smarak Maity
Neil Sinclair
Lu Zheng
Cleaven Chia
Keji Lai
Young-Ik Sohn
Srujan Meesala
Benjamin Pingault
Stefan Bogdanović
Michelle Chalupnik
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