Robust spin-photon interfaces in solids are essential components in quantum networking and sensing technologies. Ideally, these interfaces combine a long-lived spin memory, coherent optical transitions, fast and high-fidelity spin manipulation, and straightforward device integration and scaling. The tinvacancy center (SnV) in diamond is a promising spin-photon interface with desirable optical and spin properties at 1.7 K. However, the SnV spin lacks efficient microwave control, and its spin coherence degrades with higher temperature. In this work, we introduce a new platform that overcomes these challenges—SnV centers in uniformly strained thin diamond membranes. The controlled generation of crystal strain introduces orbital mixing that all...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
Group-IV color centers in diamond are a promising light-matter interface for quantum networking devi...
Optically accessible spins associated with defects in diamond provide a versatile platform for quant...
Spin impurities in diamond have emerged as a promising building block in a wide range of solid-state...
Solid-state quantum emitters that couple coherent optical transitions to long-lived spin qubits are ...
The negatively charged tin-vacancy (SnV-) center in diamond is a promising solid-state qubit for app...
The nitrogen-vacancy (NV) center in diamond has garnered great interest over the past decade as its ...
The holy grail for quantum engineers and scientists is to build the quantum internet that spans over...
We demonstrate significant improvements of the spin coherence time of a dense ensemble of nitrogen-v...
Exotic aspects of quantum mechanics, such as quantum entanglement, can be exploited to solve computa...
The uncontrolled interaction of a quantum system with its environment is detrimental for quantum coh...
The realization of quantum networks critically depends on establishing efficient, coherent light-mat...
Group-IV color centers in diamond are a promising light-matter interface for quantum networking devi...
The silicon-vacancy center in diamond offers attractive opportunities in quantum photonics due to it...
A fully functional quantum computer must contain at least two important components: a quantum memory...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
Group-IV color centers in diamond are a promising light-matter interface for quantum networking devi...
Optically accessible spins associated with defects in diamond provide a versatile platform for quant...
Spin impurities in diamond have emerged as a promising building block in a wide range of solid-state...
Solid-state quantum emitters that couple coherent optical transitions to long-lived spin qubits are ...
The negatively charged tin-vacancy (SnV-) center in diamond is a promising solid-state qubit for app...
The nitrogen-vacancy (NV) center in diamond has garnered great interest over the past decade as its ...
The holy grail for quantum engineers and scientists is to build the quantum internet that spans over...
We demonstrate significant improvements of the spin coherence time of a dense ensemble of nitrogen-v...
Exotic aspects of quantum mechanics, such as quantum entanglement, can be exploited to solve computa...
The uncontrolled interaction of a quantum system with its environment is detrimental for quantum coh...
The realization of quantum networks critically depends on establishing efficient, coherent light-mat...
Group-IV color centers in diamond are a promising light-matter interface for quantum networking devi...
The silicon-vacancy center in diamond offers attractive opportunities in quantum photonics due to it...
A fully functional quantum computer must contain at least two important components: a quantum memory...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
Group-IV color centers in diamond are a promising light-matter interface for quantum networking devi...
Optically accessible spins associated with defects in diamond provide a versatile platform for quant...