44 citations · 79 across the 4 of their papers we have counts for
6 papers · 1 filter
Minute-long quantum coherence enabled by electrical depletion of magnetic noise
Cyrus Zeledon, Benjamin Pingault, Jonathan C. Marcks +13
Integrating solid-state spin defects into classical electronic devices can enable new opportunities for quantum information processing that benefit from existing semiconductor tech…
A fluorescent-protein spin qubit
Jacob S. Feder, Benjamin S. Soloway, Shreya Verma +12
Optically-addressable spin qubits form the foundation of a new generation of emerging nanoscale sensors. The engineering of these sensors has mainly focused on solid-state systems…
Phonon counting thermometry of an ultracoherent membrane resonator near its motional ground state
Ivan Galinskiy, Yeghishe Tsaturyan, Michał Parniak +1
Generation of non-Gaussian quantum states of macroscopic mechanical objects is key to a number of challenges in quantum information science, ranging from fundamental tests of decoh…
Entanglement between Distant Macroscopic Mechanical and Spin Systems
Rodrigo A. Thomas, Michał Parniak, Christoffer Østfeldt +7
Entanglement is a vital property of multipartite quantum systems, characterised by the inseparability of quantum states of objects regardless of their spatial separation. Generatio…
Continuous Force and Displacement Measurement Below the Standard Quantum Limit
David Mason, Junxin Chen, Massimiliano Rossi +2
Quantum mechanics dictates that the precision of physical measurements must be subject to certain constraints. In the case of inteferometric displacement measurements, these restri…
Measurement-based quantum control of mechanical motion
Massimiliano Rossi, David Mason, Junxin Chen +2
Controlling a quantum system based on the observation of its dynamics is inevitably complicated by the backaction of the measurement process. Efficient measurements, however, maxim…