Miniaturized optical system for a chip based cold atom inertial sensor

Fuente: arXiv
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Autori principali: Hello, S., Snijders, H., Wirtschafter, B., Boutin, A., Fulop, L., Seguineau, F., Westbrook, C. I., Brignon, A., Dupont-Nivet, M.
Natura: Preprint
Pubblicazione: 2025
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_version_ 1866913775940009984
author Hello, S.
Snijders, H.
Wirtschafter, B.
Boutin, A.
Fulop, L.
Seguineau, F.
Westbrook, C. I.
Brignon, A.
Dupont-Nivet, M.
author_facet Hello, S.
Snijders, H.
Wirtschafter, B.
Boutin, A.
Fulop, L.
Seguineau, F.
Westbrook, C. I.
Brignon, A.
Dupont-Nivet, M.
contents We miniaturized the complex optical system responsible for the cooling, pumping and imaging of an on-chip based cold atom inertial sensor. This optical bench uses bonded miniature optics and includes all the necessary optical functions. The bench has a volume of 35x25x5~cm$^3$. We developed a laser frequency lock adapted to the optical bench using saturated absorption in a rubidium cell. The entire laser source based on frequency doubling of 1.56~$μ$m fiber lasers, including the control system and the saturated absorption module, fits in a $5U$-rack. Using the miniaturized bench, we realized two and three dimensional magneto optical traps for Rubidium 87 atoms.
format Preprint
id arxiv_https___arxiv_org_abs_2502_15537
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Miniaturized optical system for a chip based cold atom inertial sensor
Hello, S.
Snijders, H.
Wirtschafter, B.
Boutin, A.
Fulop, L.
Seguineau, F.
Westbrook, C. I.
Brignon, A.
Dupont-Nivet, M.
Atomic Physics
Applied Physics
We miniaturized the complex optical system responsible for the cooling, pumping and imaging of an on-chip based cold atom inertial sensor. This optical bench uses bonded miniature optics and includes all the necessary optical functions. The bench has a volume of 35x25x5~cm$^3$. We developed a laser frequency lock adapted to the optical bench using saturated absorption in a rubidium cell. The entire laser source based on frequency doubling of 1.56~$μ$m fiber lasers, including the control system and the saturated absorption module, fits in a $5U$-rack. Using the miniaturized bench, we realized two and three dimensional magneto optical traps for Rubidium 87 atoms.
title Miniaturized optical system for a chip based cold atom inertial sensor
topic Atomic Physics
Applied Physics
url https://arxiv.org/abs/2502.15537