7–11 Dec 2026
The University of Sydney
Australia/Sydney timezone
AIP Congress 2026

Engineered Crystal Systems for Erbium Quantum Hardware

Not scheduled
20m
Belinda Hutchinson Building (The University of Sydney )

Belinda Hutchinson Building

The University of Sydney

Abercrombie St & Codrington St NSW 2008
Contributed Oral AIP | Quantum Science and Technology (QST)

Speaker

Dr Timothy Newman (University of Sydney)

Description

The ability to send single photons over long distances is required for quantum networks, and also enables tests of fundamental physics. Erbium has optical transitions which couple to telecom-band photons, facilitating single photon transmission over tens of km.

Erbium ions are high performance light-matter interfaces, with a number of groups showing high-purity single photon emission [1], long coherence times [2], and low spectral diffusion in a number of materials [3-4]. However, erbium has a low optical dipole moment, leading to low light-matter coupling. Therefore, a common component of each single ion demonstration is Purcell enhancement: increasing emission with an optical cavity of high quality factor and low mode volume [5-6].

We address the weak dipole through a contrasting approach: engineering a nanoscopic crystalline environment to create designer erbium sites. Our system is a test-bed to develop our understanding of how the crystal field affects optical dipole moment, coherence, and magnetic sensitivity.

We identify sites with dipole moments up to 1.63x10^-32 Cm, despite lifetimes over 10 ms and coherence times in excess of 43.9 µs. We present a characterisation of the magnetic sensitivity of three of these. When coupled to a high quality-factor optical resonator, this engineered crystal system will enable a path toward high optical cooperativity.

[1] S. Ourari et al., Nature, vol. 620, no. 7976, Art. no. 7976
[2] M. Rančić et al. Nature Phys, vol. 14, no. 1, pp. 50–54
[3] Y. Yu et al. Phys. Rev. Lett., vol. 131, no. 17, p. 170801,
[4] J. M. Kindem et al. Nature, vol. 580, no. 7802, pp. 201–204
[5] A. M. Dibos et al. Nano Lett., vol. 22, no. 16, pp. 6530–6536
[6] A. Gritsch et al. Optica, vol. 10, no. 6, p. 783

I am the presenting author Yes

Author

Dr Timothy Newman (University of Sydney)

Co-authors

Ms Alice Jeffery (University of Sydney) Mr Michael Moull (University of Canterbury) Angela Liang (University of Sydney) Michael Reid (University of Canterbury) Sven Rogge John Bartholomew (University of Sydney)

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