activity
20172026
most citedCoherent Acoustic Control of a Single Silicon Vacancy Spin in Diamond

157 citations · 411 across the 15 of their papers we have counts for

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Showing 2023Show all

5 papers · 1 filter

physics.optics20231 cited

High Q-factor diamond optomechanical resonators with silicon vacancy centers at millikelvin temperatures

Graham D. Joe, Cleaven Chia, Benjamin Pingault +8

Phonons are envisioned as coherent intermediaries between different types of quantum systems. Engineered nanoscale devices such as optomechanical crystals (OMCs) provide a platform…

quant-ph2023

Engineering Phonon-Qubit Interactions using Phononic Crystals

Kazuhiro Kuruma, Benjamin Pingault, Cleaven Chia +9

The ability to control phonons in solids is key for diverse quantum applications, ranging from quantum information processing to sensing. Often, phonons are sources of noise and de…

physics.app-ph2023

Integrated Phononic Waveguides in Diamond

Sophie Weiyi Ding, Benjamin Pingault, Linbo Shao +5

Efficient generation, guiding, and detection of phonons, or mechanical vibrations, are of interest in various fields including radio frequency communication, sensing, and quantum i…

cond-mat.mes-hall2023

Microwave-based quantum control and coherence protection of tin-vacancy spin qubits in a strain-tuned diamond membrane heterostructure

Xinghan Guo, Alexander M. Stramma, Zixi Li +19

Robust spin-photon interfaces in solids are essential components in quantum networking and sensing technologies. Ideally, these interfaces combine a long-lived spin memory, coheren…

cs.DL2023

Proposal for a distributed, community-driven academic publishing system

Matteo Barbone, Mustafa Gündoğan, Dhiren M. Kara +4

We propose an academic publishing system where research papers are stored in a network of data centres owned by university libraries and research institutions, and are interfaced w…