Jones A, Cheng X, Parthasarathy SK, Arshad MJ, Cilibrizzi P, Nagy R, Salter P, Smith J, Bonato C, Bekker C (2026)
Publication Type: Conference contribution
Publication year: 2026
Publisher: Optical Society of America
Conference Proceedings Title: Quantum 2.0 - Proceedings Quantum 2.0 Conference and Exhibition
Event location: Glasgow, GBR
ISBN: 9781957171616
We demonstrate scalable generation of micrometer-deep arrays of solid-state qubits in the single-emitter regime through femtosecond laser writing. These arrays are registered to the center of solid immersion lens structures to maximize photon collection efficiency.
APA:
Jones, A., Cheng, X., Parthasarathy, S.K., Arshad, M.J., Cilibrizzi, P., Nagy, R.,... Bekker, C. (2026). Scalable Registration of Solid-state Defect Qubits in Solid Immersion Lenses through Femtosecond Laser Writing. In Quantum 2.0 - Proceedings Quantum 2.0 Conference and Exhibition. Glasgow, GBR: Optical Society of America.
MLA:
Jones, Alexander, et al. "Scalable Registration of Solid-state Defect Qubits in Solid Immersion Lenses through Femtosecond Laser Writing." Proceedings of the 2026 Optica Quantum 2.0 Conference and Exhibition, QUANTUM 2026, Glasgow, GBR Optical Society of America, 2026.
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