A low-loss telecom-band nanofiber cavity for interfacing Yb atomic qubits

Fuente: arXiv
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Main Authors: Horikawa, Seitaro, Kato, Shinya, Inoue, Ryotaro, Aoki, Takao, Goban, Akihisa, Konishi, Hideki
Format: Preprint
Published: 2025
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author Horikawa, Seitaro
Kato, Shinya
Inoue, Ryotaro
Aoki, Takao
Goban, Akihisa
Konishi, Hideki
author_facet Horikawa, Seitaro
Kato, Shinya
Inoue, Ryotaro
Aoki, Takao
Goban, Akihisa
Konishi, Hideki
contents We demonstrate the fabrication of an optical nanofiber cavity designed for efficient interface with ytterbium (Yb) atoms at telecom-wavelength transitions. Replacing the conventional hydrogen-oxygen flame with a deuterium-oxygen flame in the heat-and-pull method suppresses hydroxyl-induced absorption losses and enables low-loss nanofiber production with minimal modifications to the existing fabrication system. Using this technique, we fabricate a nanofiber cavity at 1389 nm that exhibits an intrinsic round-trip loss of $0.31(2)\%$ and a finesse of $2.0(1)\times 10^{3}$. This performance corresponds to a projected cooperativity of 90 when interfaced with Yb atoms, indicating that the cavity is well suited for efficient atom-photon coupling at telecom wavelength transitions. Our results establish a practical route for developing fiber-integrated atom-photon interfaces in the telecom band, a critical step toward scalable quantum communication and distributed quantum computing.
format Preprint
id arxiv_https___arxiv_org_abs_2506_06123
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A low-loss telecom-band nanofiber cavity for interfacing Yb atomic qubits
Horikawa, Seitaro
Kato, Shinya
Inoue, Ryotaro
Aoki, Takao
Goban, Akihisa
Konishi, Hideki
Quantum Physics
Optics
We demonstrate the fabrication of an optical nanofiber cavity designed for efficient interface with ytterbium (Yb) atoms at telecom-wavelength transitions. Replacing the conventional hydrogen-oxygen flame with a deuterium-oxygen flame in the heat-and-pull method suppresses hydroxyl-induced absorption losses and enables low-loss nanofiber production with minimal modifications to the existing fabrication system. Using this technique, we fabricate a nanofiber cavity at 1389 nm that exhibits an intrinsic round-trip loss of $0.31(2)\%$ and a finesse of $2.0(1)\times 10^{3}$. This performance corresponds to a projected cooperativity of 90 when interfaced with Yb atoms, indicating that the cavity is well suited for efficient atom-photon coupling at telecom wavelength transitions. Our results establish a practical route for developing fiber-integrated atom-photon interfaces in the telecom band, a critical step toward scalable quantum communication and distributed quantum computing.
title A low-loss telecom-band nanofiber cavity for interfacing Yb atomic qubits
topic Quantum Physics
Optics
url https://arxiv.org/abs/2506.06123