Frequency stabilization and noise suppression in the argon FM laser.
Frequency stabilization and noise suppression in argon FM laser
Engineering topics
Publications and source records attributed to Yarborough, J. M..
Frequency stabilization and noise suppression in argon FM laser
The transmission characteristics of synthesized optical single-pass and double-pass birefringent networks is obtained by measuring network transmission as a function of network temperature. This technique is most useful for testing those birefringent networks whose bandwidths and periods are very small.
Electro-optical modulator realizes voltage transfer function in synthesizing birefringent networks. Choice of the voltage transfer function is important, the most satisfactory optimizes the modulator property.
Design of frequency stabilized argon FM laser
Synthesis technique for electrooptic modulators for amplitude modulation of light based on naturally birefringent network synthesis technique
Multistage electro-optic amplitude modulator performance tests, noting agreement between experiment and theory
LF noise suppression in He-Ne and Ar lasers by internal phase modulation resulting in mode coupling
Birefringent devices, lossless double-pass network synthesis, and electro-optical amplitude modulators
Optical network synthesis using birefringent crystals - synthesis of lossless networks containing equal length crystals and compensators
Optical synthesis of lossless double-pass networks using birefringent crystals
Synthesis of electro-optic modulators for amplitude modulation of light
Optical lossless double pass network synthesis techniques using birefringent crystals extended to complex and real transmittance amplitudes
Feasibility of magnetic circuits for high reliability computer switches