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research article

A miniature frequency-stabilized VCSEL system emitting at 795nm based on LTCC modules

Gruet, Florian
•
Vecchio, Fabrizio  
•
Affolderbach, Christoph
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2013
Optics and Lasers in Engineering

We present a compact frequency-stabilized laser system locked to the Rubidium absorption line of a micro-fabricated reference cell. A printed circuit board (PCB) is used to carry all the components and part of the electronics, and low-temperature co-fired ceramic (LTCC) modules are used to temperature-stabilize the laser diode and the miniature Rubidium cell (cell inner dimensions: 5 mm diameter and 2 mm height). The measured frequency stability of the laser, in terms of Allan deviation, is ≤8×10^−10 for integration times of 10^3–10^5 s. The current overall dimensions of the system are 70×40×50 mm3, with good potential for realization of a frequency-stabilized laser module with few cm3 volume.

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Type
research article
DOI
10.1016/j.optlaseng.2013.03.009
Web of Science ID

WOS:000318465300012

Author(s)
Gruet, Florian
Vecchio, Fabrizio  
Affolderbach, Christoph
Pétremand, Yves  
de Rooij, Nico  
Maeder, Thomas  
Mileti, Gaetano
Date Issued

2013

Publisher

Elsevier

Published in
Optics and Lasers in Engineering
Volume

51

Issue

8

Start page

1023

End page

1027

Subjects

couches épaisses

•

thick-film technology

•

LTCC

•

modules céramiques

•

ceramic modules

•

plaques chauffantes

•

hotplates

•

horloges atomiques

•

atomic clocks

•

stabilisation

•

thermorégulation

•

thermal regulation

•

structuration

•

laser

•

VCSEL

•

cellule de vapeur

•

vapour cell

•

rubidium

Note

Horloge atomique simple : source VCSEL + cellule Rb micro-usinée, stabilisées thermiquement par modules LTCC Simple atomic clock : VCSEL source + micromachined Rb cell, thermally stabilised by LTCC modules

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

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April 19, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/91597
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