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Sub-MHz homogeneous linewidth in epitaxial Y2O3: Eu3+ thin film on silicon

Serrano Diana et al · Wiley · 2025

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Thin films provide nanoscale confinement together with compatibility with photonic and microwave architectures, making them ideal candidates for chip-scale quantum devices. In this work, we propose a thin film fabrication approach yielding the epitaxial growth of Eu3+ doped Y2O3 on silicon. We combine two of the most prominent thin film deposition techniques: chemical vapor deposition (CVD) and molecular beam epitaxy (MBE). We report sub-megahertz optical homogeneous linewidths up to 8 K for the Eu3+ dopants in the film, and lowest value of 270 kHz. This result constitutes a ten-fold improvement with respect to previous reports on the same material, opening promising perspectives for the development of scalable and compact quantum devices containing rare-earth ions.

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APA 7

al, S. D. E. (2025). Sub-MHz homogeneous linewidth in epitaxial Y2O3: Eu3+ thin film on silicon. https://doi.org/10.1515/nanoph-2024-0682

MLA

al, Serrano Diana et. "Sub-MHz homogeneous linewidth in epitaxial Y2O3: Eu3+ thin film on silicon." 2025. https://doi.org/10.1515/nanoph-2024-0682.

Chicago

al, Serrano Diana et. 2025. "Sub-MHz homogeneous linewidth in epitaxial Y2O3: Eu3+ thin film on silicon.". https://doi.org/10.1515/nanoph-2024-0682.

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al, S. D. E. 2025, Sub-MHz homogeneous linewidth in epitaxial Y2O3: Eu3+ thin film on silicon, Wiley, available at: https://doi.org/10.1515/nanoph-2024-0682 [Accessed 10 Aug. 2026].

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Title
Sub-MHz homogeneous linewidth in epitaxial Y2O3: Eu3+ thin film on silicon
Author / contributors
Serrano Diana et al
Publisher
Wiley
Publication year
2025
ISSN
2192-8614
ISSN
2192-8614
Language
English

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