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Fiber-based acetylene-stabilized laser
2008 Conference on Precision Electromagnetic Measurements Digest, 2008We describe a fiber-based acetylene-stabilized laser, where light is coupled to free-space only to pass through the acetylene cell. The system is constructed using standard components, which makes the approach cost effective and straightforward to implement. The Doppler-free spectrum of acetylene is detected using a simple collinear pump-probe geometry,
Ahtee, V., Merimaa, M., Nyholm, K.
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Laser tube for a frequency-stabilized laser
SPIE Proceedings, 1999In the present work the frequency characteristics of a two- frequency stabilized laser, when the strata appears in the active medium, are given.
M. A. Fedotov, Elena G. Chulyaeva
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Understanding laser stabilization using spectral hole burning
There have recently been several studies of the performance of laser frequency stabilization using spectral holes in solids, instead of an external cavity, as a frequency reference.
S Kroll, L Rippe
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IEEE Journal of Quantum Electronics, 1986
In the soliton laser, feedback from a pulse-shaping fiber enables the production of ultrafast pulses of controlled shape and width. Successful operation, however, requires maintenance of the correct optical phase of this feedback. We describe a simple but effective servo control that locks to the required phase, while simultaneously stabilizing output ...
F. Mitschke, L. Mollenauer
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In the soliton laser, feedback from a pulse-shaping fiber enables the production of ultrafast pulses of controlled shape and width. Successful operation, however, requires maintenance of the correct optical phase of this feedback. We describe a simple but effective servo control that locks to the required phase, while simultaneously stabilizing output ...
F. Mitschke, L. Mollenauer
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Soliton Laser: Geometry and Stability
Optics and Spectroscopy, 2000It is shown that by properly choosing the geometry of mirrors and the arrangement of nonlinear elements in a confocal nonlinear optical microresonator with gain and losses, spatially localized wave structures, which are stable with respect to a broad class of perturbations, can be excited.
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Stabilized Lasers and Precision Measurements
Science, 1978This article traces the development of stabilized lasers from the Massachusetts Institute of Technology passive-stabilization experiments of the early 1960's up through the current epoch of highly stabilized helium-neon and carbon dioxide and continuous wave dye lasers. The utility, present performance, and limitations of stabilized lasers as standards
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Ultimate Stability of Methane-Stabilized Lasers
Japanese Journal of Applied Physics, 1973Random frequency fluctuations of the 3.39 µm He-Ne lasers stabilized on an absorption line of methane are theoretically investigated. The minimum detectable frequency deviations are calculated for the method of linear absorption in an external cell and for the method of saturated absorption in an internal cell, and compared with each other.
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Stabilization of the HCN laser
Journal of Physics E: Scientific Instruments, 1972Two methods are described for stabilizing the output of an HCN laser: an automatic power control system suitable for use in a variable temperature environment, and an automatic frequency control system requiring stable laboratory conditions. The former can stabilize the laser output power to within +or-2% of a predetermined level for approximately 200 ...
D T Llewellyn-Jones, M D James
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Chemical Stabilization of Laser Dyes.
1984Abstract : Irradiation of ethanol solutions of coumarin laser dye lasers produces products which absorb at the lasing wavelength. This results in attenuation of dye laser output through interference of stimulated emission. A major photoprocess which produces material which absorbs at the lasing wavelength is dye sensitized solvent oxidative ...
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Topical Meeting on Ultrafast Phenomena, 1986
The soliton laser [1] consists of a synch-pumped, mode-locked color center laser, tunable in the 1.5 μm region, coupled to a second cavity, containing a single mode, polarization preserving optical fiber. (See Fig. 1.) Feedback from the fiber, where pulse compression and soliton formation take place, enables the color center laser to produce transform ...
F. M. Mitschke, L.F. Mollenauer
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The soliton laser [1] consists of a synch-pumped, mode-locked color center laser, tunable in the 1.5 μm region, coupled to a second cavity, containing a single mode, polarization preserving optical fiber. (See Fig. 1.) Feedback from the fiber, where pulse compression and soliton formation take place, enables the color center laser to produce transform ...
F. M. Mitschke, L.F. Mollenauer
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