English

Polarisation and Temperature Dependence of Er$^{3+}$:CaWO$_4$ -- Towards a Solid-State Rare-Earth Ion-Doped Quantum Memory

Quantum Physics 2025-07-22 v1

Abstract

In the endeavour of developing quantum memories, Er3+^{3+}:CaWO4_4 has emerged as a promising rare-earth ion-doped (REID) crystal platform due to its long optical coherence times and compatibility with the 1550 nm telecommunications band. This work investigates the effects of polarisation and temperature on the absorption strength, central wavelength, and linewidth of the Z1Y1Z_1\to Y_1 and Z1Y2Z_1\to Y_2 optical transitions, with light incident along the crystal aa and cc axes. It is found that the Z1Y1Z_1\to Y_1 transition at 1532.6 nm with the incident laser along the cc-axis at cryogenic temperatures (\sim3 K) is particularly favourable. The transition exhibits a stable central wavelength, narrower linewidth, polarisation independence, larger absorption cross-section, and lies within the C-band -- attributes that make it highly suitable for quantum memory applications.

Keywords

Cite

@article{arxiv.2507.15051,
  title  = {Polarisation and Temperature Dependence of Er$^{3+}$:CaWO$_4$ -- Towards a Solid-State Rare-Earth Ion-Doped Quantum Memory},
  author = {Mikhael T. Sayat and Trevor R. Lee and Suchit Negi and Naoya Iwahara and In Cheol Seo and Yung Chuen Tan and Ping Koy Lam and Young-Wook Cho and Jian-Rui Soh},
  journal= {arXiv preprint arXiv:2507.15051},
  year   = {2025}
}

Comments

16 pages, 8 figures, 1 table (Supplementary Material: 6 pages, 1 table)