6 papers
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…
A Bayesian Approach towards Atomically-precise Localization in Fluorescence Microscopy
Yuqin Duan, Qiushi Gu, Hanfeng Wang +4
Super-resolution microscopy has revolutionized the imaging of complex physical and biological systems by surpassing the Abbe diffraction limit. Recent advancements, particularly in…
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…