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Exploring the feasibility of probabilistic and deterministic quantum gates between T centers in silicon
Shahrzad Taherizadegan, Faezeh Kimiaee Asadi, Jia-Wei Ji +2
T center defects in silicon provide an attractive platform for quantum technologies due to their unique spin properties and compatibility with mature silicon technologies. We inves…
A global quantum network with ground-based single-atom memories in optical cavities and satellite links
Jia-Wei Ji, Shinichi Sunami, Seigo Kikura +2
The realization of a global quantum network holds the potential to enable groundbreaking applications such as secure quantum communication and blind quantum computing. However, bui…
Unwanted couplings can induce amplification in quantum memories despite negligible apparent noise
Faezeh Kimiaee Asadi, Janish Kumar, Jiawei Ji +2
Theoretical quantum memory design often involves selectively focusing on certain energy levels to mimic an ideal -configuration, a common approach that may unintentionally overl…
Memory and transduction prospects for silicon T centre devices
Daniel B Higginbottom, Faezeh Kimiaee Asadi, Camille Chartrand +5
The T centre, a silicon-native spin-photon interface with telecommunications-band optical transitions and long-lived microwave qubits, offers an appealing new platform for both opt…
Multiple uncertainty relation for accelerated quantum information
Chen Qian, Ya-Dong Wu, Jia-Wei Ji +2
The uncertainty principle, first introduced by Heisenberg in inertial frames, clearly distinguishes quantum theories from classical mechanics. In non-inertial frames, its informati…
Analyzing photon-count heralded entanglement generation between solid-state spin qubits by decomposing the master equation dynamics
Stephen C. Wein, Jia-Wei Ji, Yu-Feng Wu +3
We analyze and compare three different schemes that can be used to generate entanglement between spin qubits in optically-active single solid-state quantum systems. Each scheme is…