Quantum Register Based on Individual Electronic and Nuclear Spin Qubits in Diamond
University of Stuttgart · Harvard University · +1 more institution
Abstract
The key challenge in experimental quantum information science is to identify isolated quantum mechanical systems with long coherence times that can be manipulated and coupled together in a scalable fashion. We describe the coherent manipulation of an individual electron spin and nearby individual nuclear spins to create a controllable quantum register. Using optical and microwave radiation to control an electron spin associated with the nitrogen vacancy (NV) color center in diamond, we demonstrated robust initialization of electron and nuclear spin quantum bits (qubits) and transfer of arbitrary quantum states between them at room temperature. Moreover, nuclear spin qubits could be well isolated from the…
Citation impact
- FWCI
- 36.53
- Percentile
- 100%
- References
- 30
Authors
9- MDMeenakshi DuttCorresponding
University of Stuttgart, Harvard University, Texas A&M University
- LCLilian ChildressCorresponding
University of Stuttgart, Harvard University, Texas A&M University
- LJLiang Jiang
University of Stuttgart, Harvard University, Texas A&M University
- ETEmre Togan
University of Stuttgart, Harvard University, Texas A&M University
- JRJ. R. Maze
University of Stuttgart, Harvard University, Texas A&M University
Topics & keywords
- Qubit
- Nitrogen-vacancy center
- Physics
- Spin engineering
- Quantum information
- Quantum technology
- Coherence (philosophical gambling strategy)
- Superconducting quantum computing