activity
20182021
most citedCoherent Acoustic Control of a Single Silicon Vacancy Spin in Diamond

157 citations · 408 across the 4 of their papers we have counts for

collaborators

7 papers

quant-ph2021

Coherent coupling of mechanics to a single nuclear spin

Smarak Maity, Benjamin Pingault, Graham Joe +5

Nuclear spins interact weakly with their environment. In particular, they are generally insensitive to mechanical vibrations. Here, we successfully demonstrate the coherent couplin…

physics.app-ph2020141 cited

Nonreciprocal Transmission of Microwave Acoustic Waves in Nonlinear Parity-Time Symmetric Resonators

Linbo Shao, Wenbo Mao, Smarak Maity +4

Acoustic waves have emerged as versatile on-chip information carriers with applications ranging from microwave filters to transducers. Nonreciprocal devices are desirable for the c…

quant-ph2019157 cited

Coherent Acoustic Control of a Single Silicon Vacancy Spin in Diamond

Smarak Maity, Linbo Shao, Stefan Bogdanović +9

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…

physics.app-ph2019

Microwave-to-optical conversion using lithium niobate thin-film acoustic resonators

Linbo Shao, Mengjie Yu, Smarak Maity +8

We demonstrate conversion of up to 4.5 GHz-frequency microwaves to 1500 nm-wavelength light using optomechanical interactions on suspended thin-film lithium niobate. Our method uti…

physics.app-ph2019

Quantum interference of electromechanically stabilized emitters in nanophotonic devices

Bartholomeus Machielse, Stefan Bogdanovic, Srujan Meesala +15

Photon-mediated coupling between distant matter qubits may enable secure communication over long distances, the implementation of distributed quantum computing schemes, and the exp…

cond-mat.mes-hall2019110 cited

Phononic band structure engineering for high-Q gigahertz surface acoustic wave resonators on lithium niobate

Linbo Shao, Smarak Maity, Lu Zheng +9

Phonons at gigahertz frequencies interact with electrons, photons, and atomic systems in solids, and therefore have extensive applications in signal processing, sensing, and quantu…