DocumentCode :
522760
Title :
Robust tunable external cavity diode laser using a volume holographic grating for rubidium atom cooling
Author :
Chuang, Ho-Chiao ; Huang, Kuo-Yuan
Author_Institution :
Mech. Eng., Nat. Taipei Univ. of Technol., Taipei, Taiwan
Volume :
1
fYear :
2010
fDate :
10-11 May 2010
Firstpage :
5
Lastpage :
8
Abstract :
We present a robust external cavity diode laser, developed for atom trapping experiments, demonstrating a high level of stability. The novel design includes a zerodur tube surrounding the laser cavity for maximal thermal and mechanical cavity stability, a volume holographic grating (VHG) with narrow frequency bandwidth to provide optical feedback, and a micromachined silicon flexure to hold the VHG and allow for laser frequency sweeping. Using a silicon flexure allowed for temperature control of the VHG as well as a reduction of the overall size of the laser system. The results demonstrate a frequency sweeping range of 12 GHz enabled by PZT actuators, a mode-hop-free tuning range of 6 GHz with a non-AR-coated diode, a frequency tuning range of 33 GHz by changing diode current and applied PZT voltage, and a linewidth of <;1 MHz. The laser frequency drift was measured to be <;1.5 MHz/min, superior to that of many off-the-shelf external cavity diode lasers.
Keywords :
holographic gratings; laser cavity resonators; laser cooling; laser feedback; laser tuning; rubidium; semiconductor lasers; silicon; atom trapping; frequency 12 GHz; frequency 33 GHz; frequency 6 GHz; frequency tuning range; laser frequency drift; laser frequency sweeping; mechanical cavity stability; optical feedback; rubidium atom cooling; temperature control; thermal cavity stability; tunable external cavity diode laser; volume holographic grating; Atomic beams; Cooling; Diode lasers; Frequency; Gratings; Holography; Laser stability; Laser tuning; Robustness; Tunable circuits and devices; Atom trapping; External cavity diode laser; laser cooling; volume holographic grating;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Optics Photonics and Energy Engineering (OPEE), 2010 International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-5234-7
Electronic_ISBN :
978-1-4244-5236-1
Type :
conf
DOI :
10.1109/OPEE.2010.5508107
Filename :
5508107
Link To Document :
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