Fabrication of Low Loss Telecom-Band Nanofiber Cavity with Deuterium-Oxygen Flame
2025 Optical Fiber Communications Conference and Exhibition Ofc 2025 Proceedings (2025)
Abstract:
We present the fabrication of a nanofiber cavity designed for an optical transition of Ytterbium in the telecom-band. By utilizing Deuterium-Oxygen flame, we significantly reduce Si-OH bond absorption, achieving a single-path transmission rate of 99.6%.Observation of a Bilayer Superfluid with Interlayer Coherence
(2024)
Quantum simulations with bilayer 2D Bose gases in multiple-RF-dressed potentials
AVS Quantum Science American Vacuum Society 6:3 (2024) 030501
Scalable Networking of Neutral-Atom Qubits: Nanofiber-Based Approach for Multiprocessor Fault-Tolerant Quantum Computer
ArXiv 2407.11111 (2024)
Quantum Simulations with Bilayer 2D Bose Gases in Multiple-RF-dressed Potentials
(2024)