Optically stabilized narrow linewidth semiconductor laser for high resolution spectroscopy

作者: A Hemmerich , DH McIntyre , D Schropp Jr , D Meschede , TW Hänsch

DOI: 10.1016/0030-4018(90)90239-P

关键词:

摘要: Abstract A narrow bandwidth tunable semiconductor laser system operating near 780 nm is described. The commercial diodes are frequency stabilized by optical feedback from an external, confocal Fabry-Perot resonator. phase electronically to improve the stability. beat signal with 30 kHz linewidth between two identical, independent systems recorded. performance of this demonstrated in a cooling experiment rubidium.

参考文章(10)
B. Dahmani, L. Hollberg, R. Drullinger, Frequency stabilization of semiconductor lasers by resonant optical feedback Optics Letters. ,vol. 12, pp. 876- 878 ,(1987) , 10.1364/OL.12.000876
P. Laurent, A. Clairon, C. Breant, Frequency noise analysis of optically self-locked diode lasers IEEE Journal of Quantum Electronics. ,vol. 25, pp. 1131- 1142 ,(1989) , 10.1109/3.29238
C. Henry, R. Kazarinov, Instability of semiconductor lasers due to optical feedback from distant reflectors IEEE Journal of Quantum Electronics. ,vol. 22, pp. 294- 301 ,(1986) , 10.1109/JQE.1986.1072959
J. C. Camparo, The diode laser in atomic physics Contemporary Physics. ,vol. 26, pp. 443- 477 ,(1985) , 10.1080/00107518508210984
W. Ertmer, R. Blatt, J. L. Hall, M. Zhu, Laser manipulation of atomic beam velocities: Demonstration of stopped atoms and velocity reversal. Physical Review Letters. ,vol. 54, pp. 996- 999 ,(1985) , 10.1103/PHYSREVLETT.54.996
C. Henry, Theory of the linewidth of semiconductor lasers IEEE Journal of Quantum Electronics. ,vol. 18, pp. 259- 264 ,(1982) , 10.1109/JQE.1982.1071522
R. N. Watts, C. E. Wieman, Manipulating atomic velocities using diode lasers Optics Letters. ,vol. 11, pp. 291- 293 ,(1986) , 10.1364/OL.11.000291