6 papers
Full-Stack High-Volume Quantum Networking Architecture based on Photonic-Integrated Tin Vacancy Centers in Diamond
Hamza Raniwala, Ian Christen, Helaman Flores +11
Solid state quantum emitters are a leading platform for photonic quantum networking with memory nodes. However, the inhomogeneous distribution of quantum emitters, as well as sever…
Demonstration and Non-volatile Trimming of a Highly-Parallel, High-Capacity Silicon Microdisk Transmitter
Chao Luan, Alex Sludds, Chao Li +3
Optical interconnects are the most promising solution to address the data-movement bottleneck in data centers. Silicon microdisks, benefiting from their compact footprint, low ener…
Spectral tuning and nanoscale localization of single color centers in silicon via controllable strain
Alessandro Buzzi, Camille Papon, Matteo Pirro +5
The development of color centers in silicon enables scalable quantum technologies by combining telecom-wavelength emission and compatibility with mature silicon fabrication. Howeve…
High-Fidelity Control of a Strongly Coupled Electro-Nuclear Spin-Photon Interface
Isaac B. W. Harris, Ian Christen, Sofia M. Patomäki +13
Long distance quantum networking requires combining efficient spin-photon interfaces with long-lived local memories. Group-IV color centers in diamond (SiV, GeV, and SnV) are promi…
Full-volume aberration-space holography
Ian Christen, Christopher Panuski, Thomas Propson +1
Simultaneous, diffraction-limited control of multiple optical beams is crucial for applications ranging from lithography to optogenetics, deep tissue imaging, and tweezer-based man…
End-to-end physics-based modeling of laser-activated color centers in silicon
Qiushi Gu, Valeria Saggio, Camille Papon +5
Color centers are among the most promising candidates for quantum information processing. Central requirements for their practical applications include controlled and efficient loc…