collaborators

6 papers

quant-ph2026

Single-photon emitters and spin-photon interfaces in silicon

Kilian Sandholzer, Ian Berkman, Peter Deák +5

Single photons enable the distribution of quantum information over large distances and thus play a major role in quantum technologies such as communication and computing. Solid-sta…

cond-mat.supr-con2026

Geometry-enabled magnetic resilience in superconducting nanowire single-photon detectors

Marinus C. van der Maas, Lin Jin, Ilhan Tunç +7

While magnetic fields and superconductors are both central to classical and quantum technologies, their combined use is often challenging, as magnetic fields significantly affect s…

physics.optics2025

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…

quant-ph2025

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…

physics.optics2025

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…

quant-ph2025

Large-Range Tuning and Stabilization of the Optical Transition of Diamond Tin-Vacancy Centers by In-Situ Strain Control

Julia M. Brevoord, Leonardo G. C. Wienhoven, Nina Codreanu +10

The negatively charged tin-vacancy (SnV-) center in diamond has emerged as a promising platform for quantum computing and quantum networks. To connect SnV- qubits in large networks…