A narrow-line-width external cavity quantum dot laser for high-resolution spectroscopy in the near-infrared and yellow spectral ranges

被引:0
|
作者
A. Yu. Nevsky
U. Bressel
I. Ernsting
Ch. Eisele
M. Okhapkin
S. Schiller
A. Gubenko
D. Livshits
S. Mikhrin
I. Krestnikov
A. Kovsh
机构
[1] Heinrich-Heine Universität Düsseldorf,Institut für Experimentalphysik
[2] Innolume GmbH,undefined
来源
Applied Physics B | 2008年 / 92卷
关键词
06.30.Ft; 42.55.Px; 42.62.Fi;
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摘要
We demonstrate a diode laser system which is suitable for high-resolution spectroscopy in the 1.2 μm and yellow spectral ranges. It is based on a two-facet quantum dot chip in a Littrow-type external cavity configuration. The laser is tunable in the range 1125–1280 nm, with an output power of more than 200 mW, and exhibits a free-running line width of 200 kHz. Amplitude and frequency noise were characterized, including the dependence of the frequency noise on the cavity length. Frequency stabilization to a high-finesse reference cavity is demonstrated, whereby the line width was reduced to approx. 30 kHz. Using a femtosecond frequency comb, the residual frequency instability was determined and found to be below 300 Hz on the time scales 1–300 s. Yellow light (>3 mW) at 578 nm was generated by frequency doubling in an enhancement cavity containing a PPLN crystal. The source has potential application for precision spectroscopy of ultra-cold Yb atoms and cold molecular hydrogen ions.
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页码:501 / 507
页数:6
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