5 papers · 1 filter
Spatially Dense, Continuous-Variable Quantum Computing with Solid State Spin Nonlinearities
Hamza Raniwala, Ethan G Arnault, Dirk R. Englund +1
Nanomechanical structures have been investigated as a method of achieving long-lived quantum excitations at radio frequencies. Their high quality factors are especially intriguing…
Programmable Quantum Matter: Heralding Large Cluster States in Driven Inhomogeneous Spin Ensembles
Pratyush Anand, Louis Follet, Odiel Hooybergs +1
Atom-like emitters in solids are promising platforms for quantum sensing and information processing, but inhomogeneities in the emitter fine structure complicate quantum control. W…
Exceptional sensitivity near the bistable transition point of a hybrid quantum system
Hanfeng Wang, Kurt Jacobs, Donald Fahey +3
Phase transitions can dramatically alter system dynamics, unlocking new behavior and improving performance. Exceptional points (EPs), where the eigenvalues and corresponding eigenv…
Cavity-enhanced solid-state nuclear spin gyroscope
Hanfeng Wang, Shuang Wu, Kurt Jacobs +3
Solid-state quantum sensors based on ensembles of nitrogen-vacancy (NV) centers in diamond have emerged as powerful tools for precise sensing applications. Nuclear spin sensors are…
Microwave single-photon detection using a hybrid spin-optomechanical quantum interface
Pratyush Anand, Ethan G. Arnault, Matthew E. Trusheim +2
Semiconductor single-photon detectors cannot be straightforwardly adapted for the microwave regime, primarily because microwave photons carry far less energy and thus require cryog…