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- W1168305220 abstract "A cavity length control scheme was developed in order to investigate correlation between the chaotic Raman lasing of two unidirectionally coupled Raman lasers for two Ne Raman lines, 603.0 (2p2→1s4) nm and 659.9 nm (2p2→1s1). The Raman lasers were standard internal mirror He-Ne lasers and were both pumped externally by 588.2 nm radiation from a single dye laser. The cavity lengths of each He-Ne Raman laser were monitored via the beat frequencies between the modes in the standard 632.8 nm output and the 632.8 nm modes of a stabilised reference He-Ne laser. A software based PID feedback servomechanism actively controlled the cavity length by varying the current supplied to heating pads wrapped around each cavity, altering the thermal expansion/contraction. Acknowledgments I would like to thank my supervisor, Dr Peter Manson, for his support and advice which was invaluable throughout the completion of this thesis. Thank you also to Terry McRae and Kirsten Franklin for your willingness to tackle the dye laser and patience in explaining its various facets. Thanks are also due to Dr Don Warrington for assistance with the dye laser on more than one occasion in which it was being particularly uncooperative. Peter Stroud, Myles Thayer, Dave Hardisty, Peter Simpson and all other members of the technical and secretarial staff in the Physics department have at one point or another been of great assistance and I would like to thank them here. Finally, my family, friends and fellow students deserve thanks for their patience, encouragement and assistance over the course of this project. Thank you all. Table of" @default.
- W1168305220 created "2016-06-24" @default.
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- W1168305220 date "2007-01-01" @default.
- W1168305220 modified "2023-09-27" @default.
- W1168305220 title "Cavity Length Control System for the Investigation of Correlation Between two He-Ne Raman Lasers" @default.
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