5 citations · 7 across the 4 of their papers we have counts for
11 papers · 1 filter
Spin-Phonon-Photon Strong Coupling in a Piezomechanical Nanocavity
Hamza Raniwala, Stefan Krastanov, Lisa Hackett +3
We introduce a hybrid tripartite quantum system for strong coupling between a semiconductor spin, a mechanical phonon, and a microwave photon. Consisting of a piezoelectric resonat…
Investigation of the Stark Effect on a Centrosymmetric Quantum Emitter in Diamond
Lorenzo De Santis, Matthew Trusheim, Kevin Chen +1
Quantum emitters in diamond are leading optically-accessible solid-state qubits. Among these, Group IV-vacancy defect centers have attracted great interest as coherent and stable o…
Absorption-Based Diamond Spin Microscopy on a Plasmonic Quantum Metasurface
Laura Kim, Hyeongrak Choi, Matthew Trusheim +1
Nitrogen vacancy (NV) centers in diamond have emerged as a leading quantum sensor platform, combining exceptional sensitivity with nanoscale spatial resolution by optically detecte…
A Polariton-Stabilized Spin Clock
Matthew E. Trusheim, Kurt Jacobs, Jonathan E. Hoffman +3
Atom-like quantum systems in solids have been proposed as a compact alternative for atomic clocks, but realizing the potential of solid-state technology will requires an architectu…
A Phononic Bus for Coherent Interfaces Between a Superconducting Quantum Processor, Spin Memory, and Photonic Quantum Networks
Tomas Neuman, Matt Eichenfield, Matthew Trusheim +3
We introduce a method for high-fidelity quantum state transduction between a superconducting microwave qubit and the ground state spin system of a solid-state artificial atom, medi…
Strong Spin-Orbit Quenching via the Product Jahn-Teller Effect in Neutral Group IV Artificial Atom Qubits in Diamond
Christopher J. Ciccarino, Johannes Flick, Isaac B. Harris +3
Artificial atom qubits in diamond have emerged as leading candidates for a range of solid-state quantum systems, from quantum sensors to repeater nodes in memory-enhanced quantum c…