Development of narrow linewidth, micro-integrated extended cavity diode lasers for quantum optics experiments in space

被引:0
|
作者
E. Luvsandamdin
S. Spießberger
M. Schiemangk
A. Sahm
G. Mura
A. Wicht
A. Peters
G. Erbert
G. Tränkle
机构
[1] Ferdinand-Braun-Institut,
[2] Leibniz-Institut für Höchstfrequenztechnik,undefined
[3] Institut für Physik,undefined
[4] Humboldt-Universität zu Berlin,undefined
[5] Institut für Experimentalphysik,undefined
[6] Universität Düsseldorf,undefined
来源
Applied Physics B | 2013年 / 111卷
关键词
Injection Current; Free Spectral Range; Optical Clock; Atom Interferometer; Beat Note;
D O I
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中图分类号
学科分类号
摘要
We present a micro-integrated extended cavity diode laser module for experiments on rubidium Bose–Einstein condensates and atom interferometry at 780.24 nm onboard a sounding rocket. The micro-integration concept is optimized for space application. The laser chip, micro-lenses, a volume holographic Bragg grating, micro-temperature sensors and a micro-thermoelectric cooler are integrated on an aluminium nitride ceramic micro-optical bench with a foot print of only 50 × 10 mm2. Moveable parts are omitted to allow for a very compact and robust design. The laser module provides an output power of more than 120 mW at a short term (170 μs) linewidth of 54 kHz, both full-width-at-half-maximum. The laser can be coarsely tuned by 44 GHz with a continuous tuning range of 31 GHz. The micro-integration technology presented here can be transferred to other wavelengths.
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页码:255 / 260
页数:5
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