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Epitaxial single T centres in silicon-on-insulator

arXiv
Authors: Christian H. Christiansen, Kasper H. Nielsen, Alisha Nanwani, Sebastiano Guaraldo, E. Laurits Piehorsch, Arnulf J. Snedker-Nielsen, Magnus L. Madsen, David R. Gongora, Emanuele Brusaschi, Rodrigo A. Thomas, Ian Farrer, D. Hieu Nguyen, Georgios Kountouris, Beñat M. d. A. Jokisch, Mohammad Khalifa, Claudia Piccinini, Mathias Ø. Augustesen, Hugo Laurell, Kokeb B. Benti, Maria S. Gonzalez, Amedeo Carbone, Elvedin Memisevic, Sangeeth Kallatt, Mark K. Svendsen, Marianne E. Bathen, Lasse Vines, Peter Granum, Peter Krogstrup, Stefano Paesani

Year

2026

Paper ID

72322

Status

Preprint

Abstract Read

~2 min

Abstract Words

98

Citations

N/A

Abstract

Spin-photon interfaces based on silicon quantum emitters offer a scalable platform for quantum computing and networking. However, achieving coherent photon emission remains a primary challenge due to stringent material quality requirements. To overcome this, we utilise high-purity molecular-beam epitaxy (MBE) to epitaxially incorporate single T centres in silicon-on-insulator (SOI) wafers. We demonstrate single T-centre emission coupled to a nanophotonic waveguide and observe significant suppression of homogeneous broadening, yielding optical linewidths as narrow as 30 MHz using natural silicon for crystal growth. These results establish epitaxial T centres as a robust foundation for coherent spin-photon interfaces in silicon quantum photonics.

Why This Paper Matters

  • This paper contributes to the Quantum Networks research area in the Quantum Articles archive.
  • It adds a 2026 reference point for readers tracking recent quantum research.
  • Spin-photon interfaces based on silicon quantum emitters offer a scalable platform for quantum computing and networking.

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